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## Tour
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DropDown_A30AC86B_93CD_900E_41CA_B47031554ED6.label = MEEN LABS
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DropDown_A3199849_93CD_900A_41C4_B24483A3D195.label = PROGRAM SUITES
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HELIUM POROSITIMETER
This Helium Porositimeter is used for the measurement of grain volume, grain density and porosity. It is composed of a matrix cup containing five discs of different volumes used for calibration, reference cell, pressure transducer and a display unit to monitor the pressure reading.
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HELIUM POROSITIMETER
This Helium Porositimeter is used for the measurement of grain volume, grain density and porosity. It is composed of a matrix cup containing five discs of different volumes used for calibration, reference cell, pressure transducer and a display unit to monitor the pressure reading.
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SOLVENT-EXTRATION UNIT WITH MULTIPLE EXTRACTORS FOR FLUID SATURATION MEASUREMENT
This equipment is used to calculate the fluid content in the core sample and it is composed of rounded flask, glass core holder, glass condenser and a hot plate. In this setup the rounded flask has to be filled with Toluene to be used for extraction of the hydrocarbon and water.
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SOLVENT-EXTRATION UNIT WITH MULTIPLE EXTRACTORS FOR FLUID SATURATION MEASUREMENT
This equipment is used to calculate the fluid content in the core sample and it is composed of rounded flask, glass core holder, glass condenser and a hot plate. In this setup the rounded flask has to be filled with Toluene to be used for extraction of the hydrocarbon and water.
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COMPUTER CONTROLLED
FLUID FRICTION IN PIPES
This unit allows the detailed study of fluid friction head losses which occur when a fluid flows through pipes, fittings and flow metering elements. Made mainly by metallic elements (stainless steel).
Operating Ranges:
• Flow Sensor Range, 0-150L/min
• Pressure: 0-30 psi
• Sump Tank Capacity 165L
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COMPUTER CONTROLLED
FLUID FRICTION IN PIPES
This unit allows the detailed study of fluid friction head losses which occur when a fluid flows through pipes, fittings and flow metering elements. Made mainly by metallic elements (stainless steel).
Operating Ranges:
• Flow Sensor Range, 0-150L/min
• Pressure: 0-30 psi
• Sump Tank Capacity 165L
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DM-HPM mPDS 2000 V3 DENSITY METER
The DMA HPM send the raw data to an MPDS 2000 V3 evaluation unit. The required temperature is established using an external bath, climate cabinet or oven. The density measurements are carried out faster, more reliable, more accurately and required smaller sample volumes in a wide temperature and pressure ranges.
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DM-HPM mPDS 2000 V3 DENSITY METER
The DMA HPM send the raw data to an MPDS 2000 V3 evaluation unit. The required temperature is established using an external bath, climate cabinet or oven. The density measurements are carried out faster, more reliable, more accurately and required smaller sample volumes in a wide temperature and pressure ranges.
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HORIZONTAL 3-PHASE SEPARATOR
The Horizontal Three-Phase Separator, "HTSC", is a device that allows the study of the main characteristics of gravity separation and the effect of viscosity, flow and density difference in this separation horizontally. Designed in compact space and better handling features, high tolerance of liquid level change and for sediment type of sample.
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HORIZONTAL 3-PHASE SEPARATOR
The Horizontal Three-Phase Separator, "HTSC", is a device that allows the study of the main characteristics of gravity separation and the effect of viscosity, flow and density difference in this separation horizontally. Designed in compact space and better handling features, high tolerance of liquid level change and for sediment type of sample.
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INTERFACIAL TENSION METER
(IFT 700)
The robust yet precise IFT700 apparatus can determine at reservoir-representative conditions of pressure and temperature, both the interfacial tension of two immiscible fluids using the pendant/rising drop methods and the contact angle of a liquid droplet on a solid surface using the sessile drop method. By means of a capillary needle, a droplet (drop fluid) is formed in a chamber containing the other fluid (bulk fluid), subjected to the desired pressure and temperature conditions. A state-of-the-art image capture and processing system computes the relevant geometric parameters to derive the interfacial tension using the Laplace equation.
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INTERFACIAL TENSION METER
(IFT 700)
The robust yet precise IFT700 apparatus can determine at reservoir-representative conditions of pressure and temperature, both the interfacial tension of two immiscible fluids using the pendant/rising drop methods and the contact angle of a liquid droplet on a solid surface using the sessile drop method. By means of a capillary needle, a droplet (drop fluid) is formed in a chamber containing the other fluid (bulk fluid), subjected to the desired pressure and temperature conditions. A state-of-the-art image capture and processing system computes the relevant geometric parameters to derive the interfacial tension using the Laplace equation.
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HTHP CORROSION TESTER
The HPHT Corrosion Tester is designed to perform corrosion tests under elevated temperature and pressure. The device is capable of heating the sample up to 400°F (204.4°C) and applying up to 5,000 PSI (34.5 MPa). Four samples can be tested simultaneously. All wetted components are made of corrosion-resistant Stainless Steel.
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HTHP CORROSION TESTER
The HPHT Corrosion Tester is designed to perform corrosion tests under elevated temperature and pressure. The device is capable of heating the sample up to 400°F (204.4°C) and applying up to 5,000 PSI (34.5 MPa). Four samples can be tested simultaneously. All wetted components are made of corrosion-resistant Stainless Steel.
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PRESSURE-VOLUME-TEMPERATURE APPARATUS
The study of thermo-physical properties of fluids such as phase behavior, density, viscosity, etc. under varying conditions of pressure, temperature and volume is commonly known as PVT studies. The PVT System is a precision instrument used to perform PVT studies on a variety of fluids with a special emphasis on those fluids typically encountered in petroleum reservoirs.
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PRESSURE-VOLUME-TEMPERATURE APPARATUS
The study of thermo-physical properties of fluids such as phase behavior, density, viscosity, etc. under varying conditions of pressure, temperature and volume is commonly known as PVT studies. The PVT System is a precision instrument used to perform PVT studies on a variety of fluids with a special emphasis on those fluids typically encountered in petroleum reservoirs.
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MULTI SAMPLES CAPILLARY PRESSURE CELL
This equipment is used to build up the capillary pressure curve of multi samples of the same formation and rock type. It is composed of high-pressure cell, ceramic plate, pressure regulators and a display for the pressure reading.
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MULTI SAMPLES CAPILLARY PRESSURE CELL
This equipment is used to build up the capillary pressure curve of multi samples of the same formation and rock type. It is composed of high-pressure cell, ceramic plate, pressure regulators and a display for the pressure reading.
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HYDRODYNAMIC TRAINER
Utilized to demonstrate fluid friction and head losses of fluid flow through different pipe materials, pipe sizes, fittings, and flowmeters.
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HYDRODYNAMIC TRAINER
Utilized to demonstrate fluid friction and head losses of fluid flow through different pipe materials, pipe sizes, fittings, and flowmeters.
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CORE-FLOODING UNIT
This unit for the measurement of liquid and gas permeability, two-phase steady state relative permeability and Archie’s equation parameters.
The core flooding unit composed of a core holder, hand pump to create the overburden pressure on the core sample, two fluids injection pumps and resistivity meter. There is a Nitrogen gas line connected to the equipment for the measurement of the gas permeability. The equipment is connected with a computer and data acquisition system to control and monitor the pressure reading.
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CORE-FLOODING UNIT
This unit for the measurement of liquid and gas permeability, two-phase steady state relative permeability and Archie’s equation parameters.
The core flooding unit composed of a core holder, hand pump to create the overburden pressure on the core sample, two fluids injection pumps and resistivity meter. There is a Nitrogen gas line connected to the equipment for the measurement of the gas permeability. The equipment is connected with a computer and data acquisition system to control and monitor the pressure reading.
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MULTI-PUMP TEST RIG
Allows students to develop and study the characteristic curves of different types of centrifugal (open, closed, and reduced impeller), as well as the flowrate-speed correlation for positive displacement pumps.
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MULTI-PUMP TEST RIG
Allows students to develop and study the characteristic curves of different types of centrifugal (open, closed, and reduced impeller), as well as the flowrate-speed correlation for positive displacement pumps.
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ELECTROMAGNETIC VISCOMETER (ev1000)
The electromagnetic viscometer is based on a simple and reliable electromagnetic concept. Two coils move the piston back and forth via a constant magnetic induction force. Proprietary circuitry analyzes the piston’s two-way travel time to measure absolute viscosity. A built-in temperature detector (RTD) senses the actual temperature in the sampling chamber. The viscometer consists of a Cambridge Electromagnetic Viscometer SPSL 440 and a set of six calibrated pistons to cover viscosities ranging from 0.2 cP to 10,000 cP. Heat is provided by an external heating and recirculating bath.
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ELECTROMAGNETIC VISCOMETER (ev1000)
The electromagnetic viscometer is based on a simple and reliable electromagnetic concept. Two coils move the piston back and forth via a constant magnetic induction force. Proprietary circuitry analyzes the piston’s two-way travel time to measure absolute viscosity. A built-in temperature detector (RTD) senses the actual temperature in the sampling chamber. The viscometer consists of a Cambridge Electromagnetic Viscometer SPSL 440 and a set of six calibrated pistons to cover viscosities ranging from 0.2 cP to 10,000 cP. Heat is provided by an external heating and recirculating bath.
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ARCAM METAL PRINTER
The Arcam A2 is designed for production of any functional part within Aerospace and General Industry. The parts are built up layer-by-layer of metal powder melted by a powerful electron beam. Each layer is melted to the exact geometry dictated by the 3D CAD model.
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ARCAM METAL PRINTER
The Arcam A2 is designed for production of any functional part within Aerospace and General Industry. The parts are built up layer-by-layer of metal powder melted by a powerful electron beam. Each layer is melted to the exact geometry dictated by the 3D CAD model.
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LAB-SCALE DISTILLATION
Allows students to study different aspects of distillation such as reflux ratio, HETP in sieve tray, and packed columns in batch, semi-batch, and continuous modes of operation.
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LAB-SCALE DISTILLATION
Allows students to study different aspects of distillation such as reflux ratio, HETP in sieve tray, and packed columns in batch, semi-batch, and continuous modes of operation.
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SERIES/PARALLEL PUMPS
Allows students to develop and study the characteristic curves for centrifugal pumps, along with efficiency, in series and parallel as compared to single pump at different speeds.
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SERIES/PARALLEL PUMPS
Allows students to develop and study the characteristic curves for centrifugal pumps, along with efficiency, in series and parallel as compared to single pump at different speeds.
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HEAT EXCHANGER
Utilized to demonstrate the operational principles of heat transfer of double pipe, shell-and-tube, and plate heat exchangers, calculating the convective and overall heat transfer and heat exchanger effectiveness.
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HEAT EXCHANGER
Utilized to demonstrate the operational principles of heat transfer of double pipe, shell-and-tube, and plate heat exchangers, calculating the convective and overall heat transfer and heat exchanger effectiveness.
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BRINE CRYSTASLLIZATION TESTER
The crystallization temperature of a brine is the temperature at which salt crystals begin to form. Salt crystals can cause many problems, including filtration plugging, density changes, and an increase in viscosity. Therefore, it is necessary to utilize brines that have a crystallization temperature below the lowest possible operating temperature.
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BRINE CRYSTASLLIZATION TESTER
The crystallization temperature of a brine is the temperature at which salt crystals begin to form. Salt crystals can cause many problems, including filtration plugging, density changes, and an increase in viscosity. Therefore, it is necessary to utilize brines that have a crystallization temperature below the lowest possible operating temperature.
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TRAY DRYER
Allows students to study the drying characteristics of different porous and nonporous material in combined heat and mass transfer process, evaluating both heat transfer and mass transfer coefficients under different operating conditions.
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TRAY DRYER
Allows students to study the drying characteristics of different porous and nonporous material in combined heat and mass transfer process, evaluating both heat transfer and mass transfer coefficients under different operating conditions.
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ULTRA CENTRIFUGES FOR CAPILLARY PRESSURE MEASUREMENTS
This equipment is used to build up the capillary pressure curve for up to 6 samples and it is capable to run the test up to 18,000 RPM. It contains a motor, camera to detect the volumes of liquid produced from the core samples and vacuum pump to create vacuum in the chamber in which the rack of the core samples are loaded. The equipment is connected with computer and data acquisition system.
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ULTRA CENTRIFUGES FOR CAPILLARY PRESSURE MEASUREMENTS
This equipment is used to build up the capillary pressure curve for up to 6 samples and it is capable to run the test up to 18,000 RPM. It contains a motor, camera to detect the volumes of liquid produced from the core samples and vacuum pump to create vacuum in the chamber in which the rack of the core samples are loaded. The equipment is connected with computer and data acquisition system.
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SONIC SIFTER PARTICLE SIZE DISTRIBUTION
Specially designed 3" Diameter (76.2 mm) acrylic-framed sieves and an oscillating air column allows this unit to achieve efficiencies previously seen only with wet sieving for materials in powdered, granular or pellet form and is capable of achieving separations ranging from 3 µm to 5.6 mm. The Sonic Sifter table top dry particle separator is virtually maintenance free. There's no screen wear or particle attrition. Particle separations can be accomplished in less than 10 seconds under favorable conditions - cutting testing times by up to 90% over other compared methods.
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SONIC SIFTER PARTICLE SIZE DISTRIBUTION
Specially designed 3" Diameter (76.2 mm) acrylic-framed sieves and an oscillating air column allows this unit to achieve efficiencies previously seen only with wet sieving for materials in powdered, granular or pellet form and is capable of achieving separations ranging from 3 µm to 5.6 mm. The Sonic Sifter table top dry particle separator is virtually maintenance free. There's no screen wear or particle attrition. Particle separations can be accomplished in less than 10 seconds under favorable conditions - cutting testing times by up to 90% over other compared methods.
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GAS ABSORPTION
Demonstrates the principles of gas absorption, such as gas/liquid mass transfer coefficients under different operating conditions.
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GAS ABSORPTION
Demonstrates the principles of gas absorption, such as gas/liquid mass transfer coefficients under different operating conditions.
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DYNAMIC HTHP FILTER PRESS
The Dynamic High Temperature High Pressure (HTHP or HPHT) filter press measures filtration volume and cake building properties under varying downhole conditions. A motor-driven shaft fitted with propellers turns at varying speeds inside a standard 500 mL HTHP cell. RPM settings from 1 to 3600 RPM impart laminar or turbulent flow to the fluid inside the cell. By varying the shaft length, the shear stress may be increased or decreased. Built-in pressure regulators.
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DYNAMIC HTHP FILTER PRESS
The Dynamic High Temperature High Pressure (HTHP or HPHT) filter press measures filtration volume and cake building properties under varying downhole conditions. A motor-driven shaft fitted with propellers turns at varying speeds inside a standard 500 mL HTHP cell. RPM settings from 1 to 3600 RPM impart laminar or turbulent flow to the fluid inside the cell. By varying the shaft length, the shear stress may be increased or decreased. Built-in pressure regulators.
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HYDROSTATICS DUE TO ROTATION
Demonstrates the hydrostatics due rotation. Students are then asked to determine the function associated with the free surface of water.
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HYDROSTATICS DUE TO ROTATION
Demonstrates the hydrostatics due rotation. Students are then asked to determine the function associated with the free surface of water.
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DRILLSIM-20
The DrillSIM-20 is a portable well Control and Workover Simulator system capable of being transported in a single suitcase used for well control operation by providing interactive training using a combination of two physical consoles, touchscreen and laptop. All control panels not represented by the consoles are graphically represented on touchscreen or the laptop providing a realistic and immersive training environment for the student.
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DRILLSIM-20
The DrillSIM-20 is a portable well Control and Workover Simulator system capable of being transported in a single suitcase used for well control operation by providing interactive training using a combination of two physical consoles, touchscreen and laptop. All control panels not represented by the consoles are graphically represented on touchscreen or the laptop providing a realistic and immersive training environment for the student.
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PILOT-PLANT DISTILLATION
This is a semi-industrial 6m steam-driven packed column that allows the study of the principles of distillation and control using an industrial level distributed control system under steady and unsteady-state operations.
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PILOT-PLANT DISTILLATION
This is a semi-industrial 6m steam-driven packed column that allows the study of the principles of distillation and control using an industrial level distributed control system under steady and unsteady-state operations.
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FREE CONVECTION AND RADIATION
Demonstrates the effect of pressure on heat transfer through convection and radiation.
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FREE CONVECTION AND RADIATION
Demonstrates the effect of pressure on heat transfer through convection and radiation.
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EQUILIBRIUM FLASH SEPARATOR & GASOMETER
Equilibrium Flash Separator tests reservoir fluids to measure gas-oil ratios, formation volume factor, stock tank vapors, and residual oil gravity as a function of separator pressure and temperature. The instrument permits gas-oil ratio and shrinkage determinations by the flash liberation or vaporization methods. This information allows for the determination of optimum separator conditions. It accurately measures atmospheric gas in the PVT laboratory while Gasometer allows precise measurements with a minimum of technique, as required by wet test meters, gas burettes and mercury displacement.
Operational Specification:
• Maximum Temperature: 200ºF / 93ºC, max Temp
• Maximum Pressure: 660 psi / 4.5 MPa
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EQUILIBRIUM FLASH SEPARATOR & GASOMETER
Equilibrium Flash Separator tests reservoir fluids to measure gas-oil ratios, formation volume factor, stock tank vapors, and residual oil gravity as a function of separator pressure and temperature. The instrument permits gas-oil ratio and shrinkage determinations by the flash liberation or vaporization methods. This information allows for the determination of optimum separator conditions. It accurately measures atmospheric gas in the PVT laboratory while Gasometer allows precise measurements with a minimum of technique, as required by wet test meters, gas burettes and mercury displacement.
Operational Specification:
• Maximum Temperature: 200ºF / 93ºC, max Temp
• Maximum Pressure: 660 psi / 4.5 MPa
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PORTABLE METER KIT, OAKTON ION 6+, pH/mv/Ion/Temp
A pH meter is a scientific instrument that measures the hydrogen-ion activity in water-based solutions, indicating its acidity or basicity expressed as pH. The pH meter measures the difference in electrical potential between a pH electrode and a reference electrode, and so the pH meter is sometimes referred to as a "potentiometric pH meter". The difference in electrical potential relates to the acidity or pH of the solution. The pH meter is used in many applications ranging from laboratory experimentation to quality control.
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PORTABLE METER KIT, OAKTON ION 6+, pH/mv/Ion/Temp
A pH meter is a scientific instrument that measures the hydrogen-ion activity in water-based solutions, indicating its acidity or basicity expressed as pH. The pH meter measures the difference in electrical potential between a pH electrode and a reference electrode, and so the pH meter is sometimes referred to as a "potentiometric pH meter". The difference in electrical potential relates to the acidity or pH of the solution. The pH meter is used in many applications ranging from laboratory experimentation to quality control.
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EVAPORATOR
Demonstrates the principles of evaporation as combined heat and mass transfer process, while studying evaporator efficiency and economy.
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EVAPORATOR
Demonstrates the principles of evaporation as combined heat and mass transfer process, while studying evaporator efficiency and economy.
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CONSTANT SPEED CEMENT BLENDER
The Constant Speed Blender, facilitates the preparation of oil well cements and fracturing fluids for testing according to API guidelines. Constant speed blenders provide consistent mixing energy to cement slurries to prepare them for subsequent tests. It also provides a means of consistently preparing fracturing fluids for testing. The optional Torque Monitoring Module evaluates the hydration and cross-link times of these fluids.
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CONSTANT SPEED CEMENT BLENDER
The Constant Speed Blender, facilitates the preparation of oil well cements and fracturing fluids for testing according to API guidelines. Constant speed blenders provide consistent mixing energy to cement slurries to prepare them for subsequent tests. It also provides a means of consistently preparing fracturing fluids for testing. The optional Torque Monitoring Module evaluates the hydration and cross-link times of these fluids.
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HTHP BENCHTOP CONSISTOMETER
Benchtop Consistometer was specifically engineered to determine the thickening time of well cements under simulated down-hole pressures and temperatures. Its compact, lightweight design makes the unit ideally suited for benchtop use.
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HTHP BENCHTOP CONSISTOMETER
Benchtop Consistometer was specifically engineered to determine the thickening time of well cements under simulated down-hole pressures and temperatures. Its compact, lightweight design makes the unit ideally suited for benchtop use.
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SAND CONTENT KIT
One of the primary functions of a drilling fluid is to carry drilled solids from the well bore. These solids are a contaminant, and if left in the system, can lead to numerous problems. The Sand Content Kit determines the volume percent of sand-sized particles in the drilling fluid. API defines sand-sized particles as any material larger than 74 µm (200 mesh) in size. The test can be performed on low solids fluids as well as on weighted fluids. The kit consists of a glass tube graduated to read percent (%) by volume, a funnel, and a 200-mesh sieve contained in a cylindrical shaped holder.
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SAND CONTENT KIT
One of the primary functions of a drilling fluid is to carry drilled solids from the well bore. These solids are a contaminant, and if left in the system, can lead to numerous problems. The Sand Content Kit determines the volume percent of sand-sized particles in the drilling fluid. API defines sand-sized particles as any material larger than 74 µm (200 mesh) in size. The test can be performed on low solids fluids as well as on weighted fluids. The kit consists of a glass tube graduated to read percent (%) by volume, a funnel, and a 200-mesh sieve contained in a cylindrical shaped holder.
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QUIZIX Q5000 PUMP
The Quizix Q5000 precision metering pump is a high-pressure syringe pump that provides truly pulse-free pumping with unmatched precision and accuracy. These positive displacement metering pumps are ideal for handling aqueous solutions, brines, hydrocarbons, refined oils and gases such as CO2.
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QUIZIX Q5000 PUMP
The Quizix Q5000 precision metering pump is a high-pressure syringe pump that provides truly pulse-free pumping with unmatched precision and accuracy. These positive displacement metering pumps are ideal for handling aqueous solutions, brines, hydrocarbons, refined oils and gases such as CO2.
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PELTON WHEEL
Plots the turbine performance curve for different water flow rates. This is done by measuring the rotational speed of the Pelton wheel using a tachometer and adjusting the force using a tension belt.
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PELTON WHEEL
Plots the turbine performance curve for different water flow rates. This is done by measuring the rotational speed of the Pelton wheel using a tachometer and adjusting the force using a tension belt.
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VACUUM FORMING MACHINE
Large scale plastic sheet forming.
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VACUUM FORMING MACHINE
Large scale plastic sheet forming.
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HIGH TEMP-HIGH PRESSURE FILTER PRESS
The High Temperature High Pressure (HTHP of HPHT) Filter Press is designed to evaluate the filtration characteristics of drilling fluids, cement slurries, fracturing fluids, and completion fluids under elevated temperatures and pressures.
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HIGH TEMP-HIGH PRESSURE FILTER PRESS
The High Temperature High Pressure (HTHP of HPHT) Filter Press is designed to evaluate the filtration characteristics of drilling fluids, cement slurries, fracturing fluids, and completion fluids under elevated temperatures and pressures.
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MARSH FUNNEL
Viscosity and gel strengths are measurements that relate to the flow properties of fluids. The Marsh Funnel Viscometer has been used for many years to obtain an indication of the relative viscosity of drilling fluids (known as Funnel Viscosity).
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MARSH FUNNEL
Viscosity and gel strengths are measurements that relate to the flow properties of fluids. The Marsh Funnel Viscometer has been used for many years to obtain an indication of the relative viscosity of drilling fluids (known as Funnel Viscosity).
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MODEL 900 VISCOMETER
The Model 900 Viscometer is a true Couette coaxial cylinder rotational oilfield viscometer, which employs a transducer to measure the induced angle of rotation of the bob by a fluid sample.
Operational Specification:
• Max Temp: 190 ⁰F
• Heating Cup Capacity: 150 Watts
• Power Requirement: 97-250 V AC, 200 Watts, 50/60 Hz
• Shear Rate Range (sec -1): 0.01-1,700
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MODEL 900 VISCOMETER
The Model 900 Viscometer is a true Couette coaxial cylinder rotational oilfield viscometer, which employs a transducer to measure the induced angle of rotation of the bob by a fluid sample.
Operational Specification:
• Max Temp: 190 ⁰F
• Heating Cup Capacity: 150 Watts
• Power Requirement: 97-250 V AC, 200 Watts, 50/60 Hz
• Shear Rate Range (sec -1): 0.01-1,700
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RETORT
The Retort provides a method for measuring the percentage (%) of oil, water, and solids
(suspended and dissolved) contained in a sample of water-based or oil-based drilling fluids and cuttings.Knowledge of oil, water, and solid content is fundamental to proper control of mud properties when considering oil/water ratios, rheology, density, filtration, and salinity. Knowledge of solids in drilling fluids is essential to evaluation of viscosity control and solids control equipment.
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RETORT
The Retort provides a method for measuring the percentage (%) of oil, water, and solids
(suspended and dissolved) contained in a sample of water-based or oil-based drilling fluids and cuttings.Knowledge of oil, water, and solid content is fundamental to proper control of mud properties when considering oil/water ratios, rheology, density, filtration, and salinity. Knowledge of solids in drilling fluids is essential to evaluation of viscosity control and solids control equipment.
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FANN MODEL 35SA ROTATIONAL VISCOMETER
Fann Model 35 viscometers are used in research and production. These viscometers are recommended for evaluating the rheological properties of fluids, Newtonian and non-Newtonian. Testing procedure follows according to American Petroleum Institute Recommended Practice for Field Testing Water Based Drilling Fluids, API RP 13B-1/ISO 10414-1 Specification.
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FANN MODEL 35SA ROTATIONAL VISCOMETER
Fann Model 35 viscometers are used in research and production. These viscometers are recommended for evaluating the rheological properties of fluids, Newtonian and non-Newtonian. Testing procedure follows according to American Petroleum Institute Recommended Practice for Field Testing Water Based Drilling Fluids, API RP 13B-1/ISO 10414-1 Specification.
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CONVENTIONAL MUD BALANCE
The conventional mud balance is engineered so that the mud cup at one end of the beam is balanced by a fixed counterweight at the other end, with a sliding-weight rider that moves along a graduated scale. A level bubble is mounted on the beam to ensure accurate balancing.
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CONVENTIONAL MUD BALANCE
The conventional mud balance is engineered so that the mud cup at one end of the beam is balanced by a fixed counterweight at the other end, with a sliding-weight rider that moves along a graduated scale. A level bubble is mounted on the beam to ensure accurate balancing.
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MODEL 6265 MPRO ANALYZER
Mechanical Property Analyzer (MPRO) continuously measures the elastic mechanical properties (Poisson’s ratio, Young’s modulus, Bulk Modulus) and compressive strength of API cement as it cures under high-temperature and high-pressure conditions.
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MODEL 6265 MPRO ANALYZER
Mechanical Property Analyzer (MPRO) continuously measures the elastic mechanical properties (Poisson’s ratio, Young’s modulus, Bulk Modulus) and compressive strength of API cement as it cures under high-temperature and high-pressure conditions.
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HAMILTON BEACH MIXER
Single spindle mixer for drilling fluids which is fitted with an impeller approximately 1" (25 mm) in diameter mounted flash side up. This mixer meets API Specification 13A for mixing drilling fluids, with the speed: 11,500 RPM (no load) capacity and complies with API Spec 13A.
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HAMILTON BEACH MIXER
Single spindle mixer for drilling fluids which is fitted with an impeller approximately 1" (25 mm) in diameter mounted flash side up. This mixer meets API Specification 13A for mixing drilling fluids, with the speed: 11,500 RPM (no load) capacity and complies with API Spec 13A.
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ATMOSPHERIC CEMENT CONSISTOMETER
Atmospheric Consistometer is used for conditioning cement slurries as specified within API Specification 10. Determination of rheological properties, examination of free water content, and valuation of the API fluid loss test all require that the cement slurry be pre-conditioned by an Atmospheric Consistometer.
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ATMOSPHERIC CEMENT CONSISTOMETER
Atmospheric Consistometer is used for conditioning cement slurries as specified within API Specification 10. Determination of rheological properties, examination of free water content, and valuation of the API fluid loss test all require that the cement slurry be pre-conditioned by an Atmospheric Consistometer.
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MODEL 602 SUPER HYDRAULIC TESTER
Designed for tension, compression, flexure and shear strength testing on materials and assemblies. The robust design that incorporates quality materials and components ensures that our reputation for superior system performance, ease of use, and longevity is maintained.
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MODEL 602 SUPER HYDRAULIC TESTER
Designed for tension, compression, flexure and shear strength testing on materials and assemblies. The robust design that incorporates quality materials and components ensures that our reputation for superior system performance, ease of use, and longevity is maintained.
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SLIDER PENDULUM SYSTEM
This setup is used to compare the physical system with its mathematical model. Students simulate the system’s model with initial conditions and learn how to collect data for the same test cases from the physical system.
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SLIDER PENDULUM SYSTEM
This setup is used to compare the physical system with its mathematical model. Students simulate the system’s model with initial conditions and learn how to collect data for the same test cases from the physical system.
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FORTUS 400MC
This is the largest 3D plastic printer. It is able to print large objects as its build envelope is 10 in x 10 in x 14 in. Also, it has room for backup canisters so it can print continuously with little shut down time. It is can print in many types of plastic including ABS, PC, and PC-ISO.
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FORTUS 400MC
This is the largest 3D plastic printer. It is able to print large objects as its build envelope is 10 in x 10 in x 14 in. Also, it has room for backup canisters so it can print continuously with little shut down time. It is can print in many types of plastic including ABS, PC, and PC-ISO.
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ULTIMAKER PRINTER
The Ultimaker is a desktop printer. However, it can print with very high resolution and accuracy.It is great for quick prints for prototyping.
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ULTIMAKER PRINTER
The Ultimaker is a desktop printer. However, it can print with very high resolution and accuracy.It is great for quick prints for prototyping.
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PROJECT 3600 PRINTER
The Projet MJP 3600 printer is a multijet printer designed to create high performance parts. It has a build size of 11.75 in x 7.3 in x 8 in with an accuracy of 0.001 in. It can hold spare material to auto-switch when material runs out.
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PROJECT 3600 PRINTER
The ProjetMJP 3600 printer is a multijet printer designed to create high performance parts. It has a build size of 11.75 in x 7.3 in x 8 in with an accuracy of 0.001 in. It can hold spare material to auto-switch when material runs out.
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CNC TURNING MACHINE
Computer controlled small scale lathe for turning metal parts.
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CNC TURNING MACHINE
Computer controlled small scale lathe for turning metal parts.
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PRESSURIZED FLUID DENSITY SCALE
Pressurized Fluid Density Scale is similar to a standard mud balance. A sample cup of known volume is balanced by a fixed counterweight at the opposite end of a balance beam. A sliding weight rider moves along the graduated scale and a level bubble on the beam indicates when the system is in balance. The position of the rider on the graduated scale indicates the density of the sample.
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PRESSURIZED FLUID DENSITY SCALE
Pressurized Fluid Density Scale is similar to a standard mud balance. A sample cup of known volume is balanced by a fixed counterweight at the opposite end of a balance beam. A sliding weight rider moves along the graduated scale and a level bubble on the beam indicates when the system is in balance. The position of the rider on the graduated scale indicates the density of the sample.
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API FILTER PRESS, LOW PRESSURE/ LOW TEMP
The Low-Pressure Filter Press provides a quick, easy way to evaluate the filtration properties of a drilling fluid. This instrument consists of a pressure cell, frame, pressure source, filter medium, and a graduated cylinder. It conforms to API specifications, and is suitable for both field and lab use.
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API FILTER PRESS, LOW PRESSURE/ LOW TEMP
The Low-Pressure Filter Press provides a quick, easy way to evaluate the filtration properties of a drilling fluid. This instrument consists of a pressure cell, frame, pressure source, filter medium, and a graduated cylinder. It conforms to API specifications, and is suitable for both field and lab use.
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DC MOTOR EXPERIMENT
This setup is used to teach the electromechanical modeling, and control of a DC motor. The students learn to create digital position and velocity controllers for the DC motor.
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DC MOTOR EXPERIMENT
This setup is used to teach the electromechanical modeling, and control of a DC motor. The students learn to create digital position and velocity controllers for the DC motor.
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FREE AND FORCED CONVENTION
Determines the effect of air velocity on convective heat transfer. The setup has built-in sensor to measure wind speed and air temperature.
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FREE AND FORCED CONVENTION
Determines the effect of air velocity on convective heat transfer. The setup has built-in sensor to measure wind speed and air temperature.
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CNC MILLING MACHINE
Computer controlled, small scale mill for metals.
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CNC MILLING MACHINE
Computer controlled, small scale mill for metals.
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HIGH TEMPERTAURE FURNACES
THERMO SCIENTFIC LINDBERG/BLUE M BF51842PFMC
This equipment is used for MEEN 361 for Heat Treatment of Steels. Students while wearing all the safety PPE, heat up different samples of steel and then quench in different media such as Motor Oil, water or anneal at different temperatures. Through this experiment students’ goal is to normalize, quench, anneal and temper steal to different microstructures to get required material properties.
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HIGH TEMPERTAURE FURNACES
THERMO SCIENTFIC LINDBERG/BLUE M BF51842PFMC
This equipment is used for MEEN 361 for Heat Treatment of Steels. Students while wearing all the safety PPE, heat up different samples of steel and then quench in different media such as Motor Oil, water or anneal at different temperatures. Through this experiment students’ goal is to normalize, quench, anneal and temper steal to different microstructures to get required material properties.
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CHEMICAL REACTORS
Demonstrates the kinetics and reactor design principles in batch and flow reactors (continuous stirred tank reactor CSTR and plug flow reactor PFR) at different operating conditions of temperature and flowrate.
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CHEMICAL REACTORS
Demonstrates the kinetics and reactor design principles in batch and flow reactors (continuous stirred tank reactor CSTR and plug flow reactor PFR) at different operating conditions of temperature and flowrate.
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IMPACT TEST – QUALITEST IMPACT 300
This equipment is used for MEEN 361 for impact test of metals. Typical materials tested include Aluminum, Steel and Brass. During the course of the experiment students’ objective is to find the ductile to brittle transition temperature (if it exists) of the-afore mentioned metals by plotting the impact energy of each specimen against the respective temperature of each specimen. Furnaces along with a cold both is used to get the specimen to right temperatures.
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IMPACT TEST – QUALITEST IMPACT 300
This equipment is used for MEEN 361 for impact test of metals. Typical materials tested include Aluminum, Steel and Brass. During the course of the experiment students’ objective is to find the ductile to brittle transition temperature (if it exists) of the-afore mentioned metals by plotting the impact energy of each specimen against the respective temperature of each specimen. Furnaces along with a cold both is used to get the specimen to right temperatures.
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INJECTION MOLDING MACHINE
For manufacturing injection molded plastic parts.
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INJECTION MOLDING MACHINE
For manufacturing injection molded plastic parts.
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HYDROSTATICS APPARATUS
Determines the force caused by the water on the apparatus. The students try to balance the moment caused by the hydrostatic force with another moment caused by a set of weights.
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HYDROSTATICS APPARATUS
Determines the force caused by the water on the apparatus. The students try to balance the moment caused by the hydrostatic force with another moment caused by a set of weights.
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CNC ROUTER
Computer controlled milling machine for wood and soft materials.
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CNC ROUTER
Computer controlled milling machine for wood and soft materials.
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TENSILE TEST MACHINE
(MTS INSIGHT)
This equipment is used for MEEN 361 for Tensile Test of polymers. Students test materials such as Polycarbonate, Polystyrene and High-Density Polyethylene at room and elevated temperatures at different strain rates. Through this experiment student are able to see the effect of temperature as well as the effect of strain rate on non-crystalline materials such as polymers.
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TENSILE TEST MACHINE
(MTS INSIGHT)
This equipment is used for MEEN 361 for Tensile Test of polymers. Students test materials such as Polycarbonate, Polystyrene and High-Density Polyethylene at room and elevated temperatures at different strain rates. Through this experiment student are able to see the effect of temperature as well as the effect of strain rate on non-crystalline materials such as polymers.
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LINEAR AND RADIAL CONDUCTION
Demonstrates the effect of material and power input on the temperature distribution for linear and radial systems.
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LINEAR AND RADIAL CONDUCTION
Demonstrates the effect of material and power input on the temperature distribution for linear and radial systems.
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HEAT EXCHANGER
Determines the effect of mass flow rate on the effectiveness of the heat exchanger.
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HEAT EXCHANGER
Determines the effect of mass flow rate on the effectiveness of the heat exchanger.
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WIND TUNNEL
Two experiments are performed using the wind tunnel.
The first experiment is to determine the pressure distribution across an air foil. The pressures are measured using pitot tubes. This is done for different angles of attack.
The second experiment is to measure the lift and drag forces on an airfoil for different air velocities. The lift and drag forces are measured using a force sensor.
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WIND TUNNEL
Two experiments are performed using the wind tunnel.
The first experiment is to determine the pressure distribution across an air foil. The pressures are measured using pitot tubes. This is done for different angles of attack.
The second experiment is to measure the lift and drag forces on an airfoil for different air velocities. The lift and drag forces are measured using a force sensor.
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BERNOULLI'S APPARATUS
Measures the static and total pressure in a venturi. The students also change the flow rate of the water to see the effect of the flow rate on the static and total pressure.
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BERNOULLI'S APPARATUS
Measures the static and total pressure in a venturi. The students also change the flow rate of the water to see the effect of the flow rate on the static and total pressure.
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IMPACT DUE TO JET
Demonstrates the effect of flow rate on the force due to a jet of water.
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IMPACT DUE TO JET
Demonstrates the effect of flow rate on the force due to a jet of water.
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BOILING PROCESS
Shows different boiling mechanisms that can occur.
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BOILING PROCESS
Shows different boiling mechanisms that can occur.
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ECEN 455 DIGITAL COMMUNICATIONS EXPERIMENT
The ECEN 455 lab enables students to understand basic concepts in digital communications. In particular, students investigate topics such as source coding, sampling, quantization, PCM encoding, decoding, BER measurements in noisy channels, PAM, PSK and FSK modulation, and block coding. This lab also uses a software component that enables students to conduct their experiments remotely via internet.
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ECEN 455 DIGITAL COMMUNICATIONS EXPERIMENT
The ECEN 455 lab enables students to understand basic concepts in digital communications. In particular, students investigate topics such as source coding, sampling, quantization, PCM encoding, decoding, BER measurements in noisy channels, PAM, PSK and FSK modulation, and block coding. This lab also uses a software component that enables students to conduct their experiments remotely via internet.
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ECEN 479 WIRELESS COMMUNICATION LABORATORY EXPERIMENT
The concepts of the wireless communications are illustrated in ECEN 479 lab, where particular emphasis is placed on the interplay between concepts and their implementation in practical wireless communication systems. A set of experiments was designed to give students hands-on experience in wireless communications by exploring the functionalities offered by NI PXI units and Agilent equipment. Students experiment various modulation and demodulation techniques such PSK, FSK, QAM, CDMA and OFDM, and have the possibility to implement a full transceiver, including the operations of channel estimation and synchronization, BER and SNR calculations.
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ECEN 479 WIRELESS COMMUNICATION LABORATORY EXPERIMENT
The concepts of the wireless communications are illustrated in ECEN 479 lab, where particular emphasis is placed on the interplay between concepts and their implementation in practical wireless communication systems. A set of experiments was designed to give students hands-on experience in wireless communications by exploring the functionalities offered by NI PXI units and Agilent equipment. Students experiment various modulation and demodulation techniques such PSK, FSK, QAM, CDMA and OFDM, and have the possibility to implement a full transceiver, including the operations of channel estimation and synchronization, BER and SNR calculations.
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LABORATORY WORKBENCH
This lab offers students a challenging opportunity to excel in research and hands-on experience in medical imaging, digital signal processing and digital and wireless communication. These labs offer the students exposure to industrial applications in addition to exemplary research and educational experiences. The lab hosts ten motorized workbenches manufactured by TEKLAB. Each workbench is equipped with Agilent MS08104A oscilloscope, Agilent 34401A digital multi-meter, Agilent 6612C DC supply, and multiple DC/AC power supplies from TEKLAB. Also, six of these lab stations host NI PXI-1042Q units that consist of NI PXI 8119 controller, NI-PXI 5600/5610 RF up/down converter, NI-PXI 5441 AWG OSP and NI-PXI 5142 digitizer. The other 4 stations are equipped with TIMS-301C units containing various modules from EMONA Instruments.
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LABORATORY WORKBENCH
This lab offers students a challenging opportunity to excel in research and hands-on experience in medical imaging, digital signal processing and digital and wireless communication. These labs offer the students exposure to industrial applications in addition to exemplary research and educational experiences. The lab hosts ten motorized workbenches manufactured by TEKLAB. Each workbench is equipped with Agilent MS08104A oscilloscope, Agilent 34401A digital multi-meter, Agilent 6612C DC supply, and multiple DC/AC power supplies from TEKLAB. Also, six of these lab stations host NI PXI-1042Q units that consist of NI PXI 8119 controller, NI-PXI 5600/5610 RF up/down converter, NI-PXI 5441 AWG OSP and NI-PXI 5142 digitizer. The other 4 stations are equipped with TIMS-301C units containing various modules from EMONA Instruments.
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TWIN CELL UCA AND SGSM
By measuring the change in velocity of an acoustic signal, the Ultrasonic Cement Analyzer provides a continuous non-destructive method of determining compressive strength as a function of time while at temperature, pressure mechanically measures gel strength:
psi / 34.47 MPa
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TWIN CELL UCA AND SGSM
By measuring the change in velocity of an acoustic signal, the Ultrasonic Cement Analyzer provides a continuous non-destructive method of determining compressive strength as a function of time while at temperature, pressure mechanically measures gel strength:
psi / 34.47 MPa
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RESISTIVITY METER
The Resistivity Meter accurately measures the resistivity of fluids, slurries, and semisolids having resistivity from 0.01 to 400 ohm-meters. It shows both resistivity (in ohm-meters) and temperature.
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RESISTIVITY METER
The Resistivity Meter accurately measures the resistivity of fluids, slurries, and semisolids having resistivity from 0.01 to 400 ohm-meters. It shows both resistivity (in ohm-meters) and temperature.
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VERTICAL 3-PHASE SEPARATOR
The Vertical Three-Phase Separator,"VTSC", is a device that allows the study of the main characteristics of gravity separation and the effect of viscosity, flow and density difference in this separation vertically which is ideal for high flow rate, economical, ease for foam handling and for quick installation.
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VERTICAL 3-PHASE SEPARATOR
The Vertical Three-Phase Separator,"VTSC", is a device that allows the study of the main characteristics of gravity separation and the effect of viscosity, flow and density difference in this separation vertically which is ideal for high flow rate, economical, ease for foam handling and for quick installation.
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EXTREME PRESSURE LUBRICITY METER
This test produces an indication of the film strength of the fluid being tested by applying a measured force to a torque-sensitive bearing cup with the torque arm. The more common lubricity test measures fluid resistance of various lubricating additives.
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EXTREME PRESSURE LUBRICITY METER
This test produces an indication of the film strength of the fluid being tested by applying a measured force to a torque-sensitive bearing cup with the torque arm. The more common lubricity test measures fluid resistance of various lubricating additives.
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FLUID-EVAL FULL VISUAL P-V-T SYSTEM
The Visual Fluid-Eval PVT system performs hydrocarbon phase behavior studies at reservoir- representative conditions of pressure and temperature. Characterized by a full visual cell, the apparatus warrants excellent reliability on black oil, volatile oil and gas condensate samples. The full visual cell is particularly suited for studies requiring visual monitoring of the hydrocarbon sample. The system utilizes an embedded high-pressure pump to control and monitor the fluid’s pressure and volume within the cell. A video camera system continuously surveils the gas/liquid interface and measures the volume of retrograde condensate during gas condensate studies. A magnetically coupled stirrer mounted inside the sample chamber provides efficient fluid mixing and ensures fast thermo- physical equilibrium.
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FLUID-EVAL FULL VISUAL P-V-T SYSTEM
The Visual Fluid-Eval PVT system performs hydrocarbon phase behavior studies at reservoir- representative conditions of pressure and temperature. Characterized by a full visual cell, the apparatus warrants excellent reliability on black oil, volatile oil and gas condensate samples. The full visual cell is particularly suited for studies requiring visual monitoring of the hydrocarbon sample. The system utilizes an embedded high-pressure pump to control and monitor the fluid’s pressure and volume within the cell. A video camera system continuously surveils the gas/liquid interface and measures the volume of retrograde condensate during gas condensate studies. A magnetically coupled stirrer mounted inside the sample chamber provides efficient fluid mixing and ensures fast thermo- physical equilibrium.
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SIGMA 703 D TENSIOMETER
Sigma 703D Force Tensiometer, a simple standalone and robust digital force tensiometer for accurate measurement of surface and interfacial tension. With convenient control keyboard operations and open design there is no need for an external computer. Measurements are displayed in real- time on the large digital screen integrated into the instrument and can be transferred to a computer using the Data receiver software.
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SIGMA 703 D TENSIOMETER
Sigma 703D Force Tensiometer, a simple standalone and robust digital force tensiometer for accurate measurement of surface and interfacial tension. With convenient control keyboard operations and open design there is no need for an external computer. Measurements are displayed in real- time on the large digital screen integrated into the instrument and can be transferred to a computer using the Data receiver software.
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DV-III ULTRA RHEOMETER BROOKFIELD
Analyze characteristics such as yield stress, flow curves, (mixing, pumping, spraying), leveling and recovery 2600 speeds to characterize a wide range of flow behavior. Built-in math models for data analysis in stand-alone mode e.i. Casson, Bingham, Power Law.
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DV-III ULTRA RHEOMETER BROOKFIELD
Analyze characteristics such as yield stress, flow curves, (mixing, pumping, spraying), leveling and recovery 2600 speeds to characterize a wide range of flow behavior. Built-in math models for data analysis in stand-alone mode e.i. Casson, Bingham, Power Law.
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THE DRILLSIM-500 FULL-SIZE SIMULATOR
Used for training personnel in equipment operation and advanced drilling and well control engineering techniques. Oil well control is the management of the dangerous effects caused by the unexpected release of formation fluid, such as natural gas and/or crude oil, upon surface equipment of oil or gas drilling rigs and escaping into the atmosphere. Technically, oil well control involves preventing the formation gas or fluid (hydrocarbons), usually referred to as kick, from entering into the wellbore during drilling or well interventions in both onshore and offshore operational environments.
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THE DRILLSIM-500 FULL-SIZE SIMULATOR
Used for training personnel in equipment operation and advanced drilling and well control engineering techniques. Oil well control is the management of the dangerous effects caused by the unexpected release of formation fluid, such as natural gas and/or crude oil, upon surface equipment of oil or gas drilling rigs and escaping into the atmosphere. Technically, oil well control involves preventing the formation gas or fluid (hydrocarbons), usually referred to as kick, from entering into the wellbore during drilling or well interventions in both onshore and offshore operational environments.
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Laboratory Workstations
This lab is equipped with instruments and devices such as power supplies, function generators, digital multi-meters, RLC meters, oscilloscopes, soldering stations and a large variety of electrical and electronic components that are useful in helping students develop their capstone senior design projects and other projects. Safety requirements are imposed and monitored while students are working in the capstone design project.
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Laboratory Workstations
This lab is equipped with instruments and devices such as power supplies, function generators, digital multi-meters, RLC meters, oscilloscopes, soldering stations and a large variety of electrical and electronic components that are useful in helping students develop their capstone senior design projects and other projects. Safety requirements are imposed and monitored while students are working in the capstone design project.
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ATR-IR PERKIN ELMER, SPECTRUM ONE "ATTENUATED TOTAL REFLECTENCE- INFRARED SPECTROSCOPY"
Market-leading infrared spectrometers and instrumentation used for measurements in the mid and near IR regions. .Ideal for determination of functional group elongations and vibrations in organic compounds.
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ATR-IR PERKIN ELMER, SPECTRUM ONE "ATTENUATED TOTAL REFLECTENCE- INFRARED SPECTROSCOPY"
Market-leading infrared spectrometers and instrumentation used for measurements in the mid and near IR regions. .Ideal for determination of functional group elongations and vibrations in organic compounds.
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GAS PRESSURE SENSOR
The Go Direct Gas Pressure Sensor measures the absolute pressure of a gas.
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GAS PRESSURE SENSOR
The Go Direct Gas Pressure Sensor measures the absolute pressure of a gas.
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CONDUCTIVITY PROBE
The Go Direct Conductivity Probe determines the ionic content of an aqueous solution by measuring its electrical conductivity.
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CONDUCTIVITY PROBE
The Go Direct Conductivity Probe determines the ionic content of an aqueous solution by measuring its electrical conductivity.
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DIGITAL VERNIER CALIPER
Used for measure the depth, internal and external dimensions with greater accuracy. It can measure up to one-hundredth of a millimeter.
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DIGITAL VERNIER CALIPER
Used for measure the depth, internal and external dimensions with greater accuracy. It can measure up to one-hundredth of a millimeter.
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AIR HOCKEY TABLE
Provides airflow to eliminate friction between the surfaces. The Air table can also be inclined to study the forces, velocities and acceleration of objects up or down the incline.
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AIR HOCKEY TABLE
Provides airflow to eliminate friction between the surfaces. The Air table can also be inclined to study the forces, velocities and acceleration of objects up or down the incline.
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MAGNETIC FIELD PROBE
Measures the magnetic field created by a magnet.
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MAGNETIC FIELD PROBE
Measures the magnetic field created by a magnet.
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VOLTAGE PROBE
Measures potential in DC or AC circuits.
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VOLTAGE PROBE
Measures potential in DC or AC circuits.
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LOSSES DUE TO PIPE ELEMENTS
Determines the effect of different pipe elements on pressure drop.
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LOSSES DUE TO PIPE ELEMENTS
Determines the effect of different pipe elements on pressure drop.
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WATER HAMMER EXPERIMENT
Demonstrates the effect of the surge chamber on decreasing the effect of the water hammer phenomena.
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WATER HAMMER EXPERIMENT
Demonstrates the effect of the surge chamber on decreasing the effect of the water hammer phenomena.
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RESISTIVE WIRE BOARD
Contains three wires of different cross sectional area.
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RESISTIVE WIRE BOARD
Contains three wires of different cross sectional area.
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RLC CIRCUIT BOARD
Board that contains resistors, capacitors, inductor and a light bulb.
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RLC CIRCUIT BOARD
Board that contains resistors, capacitors, inductor and a light bulb.
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IRREGULAR PENTAGON WITH TRACKING STICKERS
Used to determine the center of mass and the moment of inertia. The tracking stickers are used to obtain real-time measurements.
L SHAPE WOODEN OBJECT WITH TRACKING STICKERS
Used to determine the center of mass and verify the conservation of angular momentum. The tracking stickers are used to obtain real-time measurements.
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IRREGULAR PENTAGON WITH TRACKING STICKERS
Used to determine the center of mass and the moment of inertia. The tracking stickers are used to obtain real-time measurements.
L SHAPE WOODEN OBJECT WITH TRACKING STICKERS
Used to determine the center of mass and verify the conservation of angular momentum. The tracking stickers are used to obtain real-time measurements.
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LCR METER
Measures capacitance (C), resistance (R), and inductance (L) of an electronic component.
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LCR METER
Measures capacitance (C), resistance (R), and inductance (L) of an electronic component.
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DIGITAL MULTI METER (DMM)
Measures voltage, current, and resistance.
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DIGITAL MULTI METER (DMM)
Measures voltage, current, and resistance.
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TENSILE TEST MACHINE
(MTS 810)
This equipment is used for MEEN 361 for Tensile Test of metals. Students test materials such as Steel 1018, Steel 4140, Aluminum 6061, Cast Iron etc. Testing at the same strain rate and use Laser extensometer, students are able to calculate material properties of each of the metal tested. Some of the properties tested or calculated are Young’s Modulus, Yield Strength, Ultimate Tensile Strength, toughness etc.
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TENSILE TEST MACHINE
(MTS 810)
This equipment is used for MEEN 361 for Tensile Test of metals. Students test materials such as Steel 1018, Steel 4140, Aluminum 6061, Cast Iron etc. Testing at the same strain rate and use Laser extensometer, students are able to calculate material properties of each of the metal tested. Some of the properties tested or calculated are Young’s Modulus, Yield Strength, Ultimate Tensile Strength, toughness etc.
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PARALLEL PLATE CAPACITOR
Capacitor with one movable plate to change the separation between the plates and how it related to capacitance.
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PARALLEL PLATE CAPACITOR
Capacitor with one movable plate to change the separation between the plates and how it related to capacitance.
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ELECTRIC FIELD EXPERIMENT
Short list of equipment you need to take home. Conductive paper, aluminum shapes to create a configuration and magnets to ensure a good contact between shapes and conductive paper.
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ELECTRIC FIELD EXPERIMENT
Short list of equipment you need to take home. Conductive paper, aluminum shapes to create a configuration and magnets to ensure a good contact between shapes and conductive paper.
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200-TURN COIL
Coil of 200 turns of wire.
NEODYMIUM MAGNET
Rare and strong magnet.
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200-TURN COIL
Coil of 200 turns of wire.
NEODYMIUM MAGNET
Rare and strong magnet.
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CONSTANT CURRENT SYSTEM
The combines a wide input current output range and high precision, making it an excellent choice for investigations of circuits and electromagnetism.
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CONSTANT CURRENT SYSTEM
The combines a wide input current output range and high precision, making it an excellent choice for investigations of circuits and electromagnetism.
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ECEN 215 PRINCIPLES OF ELECTRICAL ENGINEERING EXPERIMENTS
This laboratory is also used for teaching the ECEN 215 concepts to non-electrical engineering students. In this course, students learn the basic concepts of electrical engineering such as DC electric circuits and measurements, circuit analysis techniques, first order transient response of RC and RL circuits, steady-state response of AC circuits, frequency response, operational amplifiers, and digital logic circuits.
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ECEN 215 PRINCIPLES OF ELECTRICAL ENGINEERING EXPERIMENTS
This laboratory is also used for teaching the ECEN 215 concepts to non-electrical engineering students. In this course, students learn the basic concepts of electrical engineering such as DC electric circuits and measurements, circuit analysis techniques, first order transient response of RC and RL circuits, steady-state response of AC circuits, frequency response, operational amplifiers, and digital logic circuits.
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ECEN 248 INTRODUCTION TO DIGITAL SYSTEMS DESIGN EXPERIMENT
The ECEN 248 lab relies on the ALTERA DE2 board. The lab experiments include: Designing in Verilog a 7-segment decoder as a case study of behavioral modeling; Implementing in Verilog a binary addition as a case study of hierarchical design; Designing a 4-bit arithmetic circuit that performs addition, subtraction and shifting operations; Implementing counters and frequency dividers. Students are also given the task to design a more complex project such as a control system that meets specific specifications. Last fall, this project assumed the task of designing the control system for a vending machine.
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ECEN 248 INTRODUCTION TO DIGITAL SYSTEMS DESIGN EXPERIMENT
The ECEN 248 lab relies on the ALTERA DE2 board. The lab experiments include: Designing in Verilog a 7-segment decoder as a case study of behavioral modeling; Implementing in Verilog a binary addition as a case study of hierarchical design; Designing a 4-bit arithmetic circuit that performs addition, subtraction and shifting operations; Implementing counters and frequency dividers. Students are also given the task to design a more complex project such as a control system that meets specific specifications. Last fall, this project assumed the task of designing the control system for a vending machine.
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LABORATORY WORKSTATION
This laboratory is used for teaching basic concepts of electric circuits and electronics and for providing students the necessary hands-on experience. The lab consists of twelve stations and an instructional area. Each station is equipped with a NI-Elvis II+ kit, Tektronix MDO3014 oscilloscope, Tektronix AFG3021 arbitrary waveform generator, Fluke 8845A digital multi-meter, and multiple DC/AC power supplies from TEKLAB. Most of the instrumentation is connected and controlled by a computer interface bus installed via the automatic bench. The lab is also equipped with component kits, breadboards, and two Agilent 4263B LCR meters needed to conduct the experiments. During the lab sessions, students are expected to design and test circuits using EWB and real components.
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LABORATORY WORKSTATION
This laboratory is used for teaching basic concepts of electric circuits and electronics and for providing students the necessary hands-on experience. The lab consists of twelve stations and an instructional area. Each station is equipped with a NI-Elvis II+ kit, Tektronix MDO3014 oscilloscope, Tektronix AFG3021 arbitrary waveform generator, Fluke 8845A digital multi-meter, and multiple DC/AC power supplies from TEKLAB. Most of the instrumentation is connected and controlled by a computer interface bus installed via the automatic bench. The lab is also equipped with component kits, breadboards, and two Agilent 4263B LCR meters needed to conduct the experiments. During the lab sessions, students are expected to design and test circuits using EWB and real components.
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FENN COLD ROLLING MILL
This equipment is used for MEEN 361 for Cold Working Experiments. Students are given different flat samples of Brass which they cold-roll to different percent cold work. By testing hardness of these sample at different steps of cold work, they are able to draw correlations between percent cold-work and strength of the material.
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FENN COLD ROLLING MILL
This equipment is used for MEEN 361 for Cold Working Experiments. Students are given different flat samples of Brass which they cold-roll to different percent cold work. By testing hardness of these sample at different steps of cold work, they are able to draw correlations between percent cold-work and strength of the material.
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AIR HOCKEY PUCK
Air hockey puck with a tracking sticker placed at its center is used to study the motion as it moves over the Air-table. The tracking systems provide real-time measurements of position, velocity, and acceleration. Also, it is used to study the circular motion.
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AIR HOCKEY PUCK
Air hockey puck with a tracking sticker placed at its center is used to study the motion as it moves over the Air-table. The tracking systems provide real-time measurements of position, velocity, and acceleration. Also, it is used to study the circular motion.
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NMREADY SPECTROMETER
A benchtop NMR platform, sampling accessories and a highly connective software interfaces to allow users to automate routine QA/QC processes. Mainly used in the determination of the structure of organic compounds.
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NMREADY SPECTROMETER
A benchtop NMR platform, sampling accessories and a highly connective software interfaces to allow users to automate routine QA/QC processes. Mainly used in the determination of the structure of organic compounds.
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ACPI-MS
A direct probe to determine the molecular weight of an organic compound. This is the latest technology in Compact mass spectrometry.
TLC-MS
An automated TLC system that can analyze by Mass spectroscopy all the materials that are separated on a Thin layer chromatography plate.
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ACPI-MS
A direct probe to determine the molecular weight of an organic compound. This is the latest technology in Compact mass spectrometry.
TLC-MS
An automated TLC system that can analyze by Mass spectroscopy all the materials that are separated on a Thin layer chromatography plate.
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VERNIER INTERFACE (LAB PRO)
Used with Logger Pro software that is compatible with windows and Mac computers data-collection and analysis for general chemistry experiments; the interface allows you to connect over 75 Vernier LabQuest sensors.
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VERNIER INTERFACE (LAB PRO)
Used with Logger Pro software that is compatible with windows and Mac computers data-collection and analysis for general chemistry experiments; the interface allows you to connect over 75 Vernier LabQuest sensors.
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ECEN 449 MICROPROCESSOR SYSTEMS DESIGN EXPERIMENT
The basic objective of the ECEN 449 lab is to acquaint the students with the design of microprocessor systems. The students develop their designs and then investigate their designs using the LPC4088 development platform. The lab experiments comprise: Introductory to Cortex-M4 and LPC4088 development kit; Digital input-output and GPIO; Interrupt and low power features; Analog input and output; Timer and PWM; Serial communication; Interface with LCD screens; Real-time operating system. Students have also the possibility to apply the accumulated knowledge into practice by designing and implementing an Internet of Things (IoT) project by respecting strict constraints and specifications.
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ECEN 449 MICROPROCESSOR SYSTEMS DESIGN EXPERIMENT
The basic objective of the ECEN 449 lab is to acquaint the students with the design of microprocessor systems. The students develop their designs and then investigate their designs using the LPC4088 development platform. The lab experiments comprise: Introductory to Cortex-M4 and LPC4088 development kit; Digital input-output and GPIO; Interrupt and low power features; Analog input and output; Timer and PWM; Serial communication; Interface with LCD screens; Real-time operating system. Students have also the possibility to apply the accumulated knowledge into practice by designing and implementing an Internet of Things (IoT) project by respecting strict constraints and specifications.
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PH SENSOR
The Go Direct pH Sensor is a general-purpose pH sensor used to monitor pH of aqueous solutions.
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PH SENSOR
The Go Direct pH Sensor is a general-purpose pH sensor used to monitor pH of aqueous solutions.
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SPECTROMETER
The ocean optics Spectrometer quickly measures a full wavelength spectrum.
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SPECTROMETER
The ocean optics Spectrometer quickly measures a full wavelength spectrum.
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TEMPERATURE PROBE
The Go Direct Temperature Probe is a rugged, general-purpose sensor that students can use to monitor temperature.
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TEMPERATURE PROBE
The Go Direct Temperature Probe is a rugged, general-purpose sensor that students can use to monitor temperature.
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ECEN 214 ELECTRICAL CIRCUIT THEORY EXPERIMENTS
Laboratory experiments conducted in ECEN 214 lab include: verifying Ohm’s and Kirchhoff’s laws, conducting nodal and mesh analysis, checking Thevenin and Norton theorems, implementing operational amplifier applications, analysis of RC, RL and RCL circuits and their transient response, AC power measurement, and circuit simulation using Multisim.
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ECEN 214 ELECTRICAL CIRCUIT THEORY EXPERIMENTS
Laboratory experiments conducted in ECEN 214 lab include: verifying Ohm’s and Kirchhoff’s laws, conducting nodal and mesh analysis, checking Thevenin and Norton theorems, implementing operational amplifier applications, analysis of RC, RL and RCL circuits and their transient response, AC power measurement, and circuit simulation using Multisim.
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ECEN 350 COMPUTER ARCHITECTURE AND DESIGN EXPERIMENT
The main purpose of the ECEN 350 lab is to enhance student understanding of contemporary computer architecture (ARM v8) design and operation principles through a series of programming and software design tasks, and hardware design experiments. The conducted lab experiments include: Introduction to ARMv8 instructions; Memory Access Instructions and C to Assembly Conversion; ARMv8 Flow Control Instructions; Function calls in ARMv8 Assembly; Overview and applications of Xilinx Integrated Software Environment for hardware design; Register File Implementation of an ARMV8 CPU; Memory Data Cache Simulation.
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ECEN 350 COMPUTER ARCHITECTURE AND DESIGN EXPERIMENT
The main purpose of the ECEN 350 lab is to enhance student understanding of contemporary computer architecture (ARM v8) design and operation principles through a series of programming and software design tasks, and hardware design experiments. The conducted lab experiments include: Introduction to ARMv8 instructions; Memory Access Instructions and C to Assembly Conversion; ARMv8 Flow Control Instructions; Function calls in ARMv8 Assembly; Overview and applications of Xilinx Integrated Software Environment for hardware design; Register File Implementation of an ARMV8 CPU; Memory Data Cache Simulation.
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ECEN 325 ELECTRONICS EXPERIMENTS
Lab experiments in ECEN 325 include network analysis and Bode plots, operational amplifiers, filters using operational amplifiers, diodes characteristics, applications using diodes as rectifiers, characteristics of BJT and MOSFET, and applications of the BJT and CMOS transistors in designing amplifiers. Students conduct a design project that involves transistors and operational amplifiers. NI Elvis virtual instrumentation and power supplies are used in this lab.
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ECEN 325 ELECTRONICS EXPERIMENTS
Lab experiments in ECEN 325 include network analysis and Bode plots, operational amplifiers, filters using operational amplifiers, diodes characteristics, applications using diodes as rectifiers, characteristics of BJT and MOSFET, and applications of the BJT and CMOS transistors in designing amplifiers. Students conduct a design project that involves transistors and operational amplifiers. NI Elvis virtual instrumentation and power supplies are used in this lab.
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LABORATORY WORKBENCH
Each workbench is equipped with LPC4088 Arm Cortex-M4 and an ALTERA DE2 boards, digital system prototyping kits, PC workstations for running assembly language simulators, software design tools, and hardware description language (Verilog HDL) design and synthesis tools. Each station is also equipped with Agilent MS08104A oscilloscope, Tektronix AFG3021 waveform generator, Fluke 8845A digital multi-meter, and multiple TEKLAB DC/AC power supplies.
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LABORATORY WORKBENCH
Each workbench is equipped with LPC4088 Arm Cortex-M4 and an ALTERA DE2 boards, digital system prototyping kits, PC workstations for running assembly language simulators, software design tools, and hardware description language (Verilog HDL) design and synthesis tools. Each station is also equipped with Agilent MS08104A oscilloscope, Tektronix AFG3021 waveform generator, Fluke 8845A digital multi-meter, and multiple TEKLAB DC/AC power supplies.
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ECEN 438 POWER ELECTRONICS EXPERIMENTS
The ECEN 438 lab allow students to get familiar with the characteristics and applications of power electronics components such as power diodes, MOSFETS, IGBTs, thyristors, chopper/inverter control units, thyristor controllers and switch-mode power supplies. Lab experiments include: Half-wave and full-wave rectifiers, single-phase and three-phase controlled rectifiers, buck and boost converters, and inverters.
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ECEN 438 POWER ELECTRONICS EXPERIMENTS
The ECEN 438 lab allow students to get familiar with the characteristics and applications of power electronics components such as power diodes, MOSFETS, IGBTs, thyristors, chopper/inverter control units, thyristor controllers and switch-mode power supplies. Lab experiments include: Half-wave and full-wave rectifiers, single-phase and three-phase controlled rectifiers, buck and boost converters, and inverters.
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ECEN 459 POWER SYSTEM FAULT ANALYSIS AND PROTECTION EXPERIMENTS
Experiments of ECEN 459 lab involve testing transmission line parameters and models, investigating different types of power system faults and protection relays. The set of lab experiments help students to get familiar and master the concepts and technologies that allow integration of power system components into the power system, understand the concepts of power factor stability, load flow, transmission lines parameters, and power system faults and protection using over and under voltage relays, and over current relays.
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ECEN 459 POWER SYSTEM FAULT ANALYSIS AND PROTECTION EXPERIMENTS
Experiments of ECEN 459 lab involve testing transmission line parameters and models, investigating different types of power system faults and protection relays. The set of lab experiments help students to get familiar and master the concepts and technologies that allow integration of power system components into the power system, understand the concepts of power factor stability, load flow, transmission lines parameters, and power system faults and protection using over and under voltage relays, and over current relays.
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ECEN 338 ELECTROMECHANICAL ENERGY CONVERSION EXPERIMENTS
The ECEN 338 lab enables students to explore basic concepts in electromechanical energy conversion. Lab experiments include: Three-phase Δ and Y circuits, principles of single-phase and three-phase transformers, three-phase synchronous generators, three-phase induction motors, separately exited and shunt DC motors, single-phase induction and universal motors.
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ECEN 338 ELECTROMECHANICAL ENERGY CONVERSION EXPERIMENTS
The ECEN 338 lab enables students to explore basic concepts in electromechanical energy conversion. Lab experiments include: Three-phase Δ and Y circuits, principles of single-phase and three-phase transformers, three-phase synchronous generators, three-phase induction motors, separately exited and shunt DC motors, single-phase induction and universal motors.
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PCB MACHINE LPKF PROTOMAT S103
This is the ProtoMat S103 mill/drill PCB manufacturing machine from LPKF Germany. Using a moving speed of 150 mm/s and a motor speed of 40,000 to 100,000 min-1 the ProtoMat S produces high-end and complex printed circuit board very fast and professionally. With a resolution of 0.25 μm this machine provides highest precision.
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PCB MACHINE LPKF PROTOMAT S103
This is the ProtoMat S103 mill/drill PCB manufacturing machine from LPKF Germany. Using a moving speed of 150 mm/s and a motor speed of 40,000 to 100,000 min-1 the ProtoMat S produces high-end and complex printed circuit board very fast and professionally. With a resolution of 0.25 μm this machine provides highest precision.
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LABORATORY EQUIPMENT
This laboratory is used for studying the behavior of different types of electric machines, integrating power components into power systems, and power system faults and protection measures. The lab hosts twenty-two stations all equipped with an Agilent MS08104A oscilloscope and an U1251A digital multi-meter. Eight of these stations are dedicated for teaching electrical machines using educationally designed panels from Feedback. These stations are equipped with multiple electrical machines such as DC motors, synchronous motors and generators, induction motors, and power transformers. Other eight lab stations are equipped with Leybold Didactic educational panels to implement transmission line components. These stations are equipped with modules of power systems components and protection devices to expose students to power system components characteristics. Other six stations are equipped with Leybold Didactic panels for electronics components. These panels host power diodes, MOSFETS, IGBTs, thyristors, chopper/inverter control units, thyristor controllers and switch-mode power supplies.
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LABORATORY EQUIPMENT
This laboratory is used for studying the behavior of different types of electric machines, integrating power components into power systems, and power system faults and protection measures. The lab hosts twenty-two stations all equipped with an Agilent MS08104A oscilloscope and an U1251A digital multi-meter. Eight of these stations are dedicated for teaching electrical machines using educationally designed panels from Feedback. These stations are equipped with multiple electrical machines such as DC motors, synchronous motors and generators, induction motors, and power transformers. Other eight lab stations are equipped with Leybold Didactic educational panels to implement transmission line components. These stations are equipped with modules of power systems components and protection devices to expose students to power system components characteristics. Other six stations are equipped with Leybold Didactic panels for electronics components. These panels host power diodes, MOSFETS, IGBTs, thyristors, chopper/inverter control units, thyristor controllers and switch-mode power supplies.
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REPAIR AND REWORK STATION
This is the repair and rework station equipped with soldering/desoldering stations, measurement and testing equipment and various tools used for electronics prototyping.
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REPAIR AND REWORK STATION
This is the repair and rework station equipped with soldering/desoldering stations, measurement and testing equipment and various tools used for electronics prototyping.
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3D SCANNER
The 3D scanner takes multiple scans of an object and creates a 3D digital model. The 3D scanner has a handheld probe which allows the user to move freely and take scans in hard to reach places.
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3D SCANNER
The 3D scanner takes multiple scans of an object and creates a 3D digital model. The 3D scanner has a handheld probe which allows the user to move freely and take scans in hard to reach places.
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THROUGH-HOLE-PLANTING BUNGARD COMPACTA 30
For double side PCB, we need to do electroplating of the holes drilled in the board to make the connection between the top layer and bottom layer of the board, for that we use the Compacta 30 electroplating system from Bungard.
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THROUGH-HOLE-PLANTING BUNGARD COMPACTA 30
For double side PCB, we need to do electroplating of the holes drilled in the board to make the connection between the top layer and bottom layer of the board, for that we use the Compacta 30 electroplating system from Bungard.
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PCB MACHINE LPKF PROTOLASER ST
This is a table top machine for laser structuring of PCB from LPKF Germany.
It uses class 1 laser for structuring almost all common PCB material. It can process sensitive RF material with exact geometries.
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PCB MACHINE LPKF PROTOLASER ST
This is a table top machine for laser structuring of PCB from LPKF Germany.
It uses class 1 laser for structuring almost all common PCB material. It can process sensitive RF material with exact geometries.
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PCB MACHINE BUNGARD CCD-ATC
This is CCD-ATC mill/drill and Laser machine from Bungard Germany, with this machine we can do regular mill/ drill operation, or using the laser for photo resist exposure and later on chemical etching of the PCB.
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PCB MACHINE BUNGARD CCD-ATC
This is CCD-ATC mill/drill and Laser machine from Bungard Germany, with this machine we can do regular mill/ drill operation, or using the laser for photo resist exposure and later on chemical etching of the PCB.
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PLASTIC PRINTERS
These printers are manufactured by Stratasys and allow us to print 3D objects in ABS.
The Fortus 250mc has a build envelope of 10 in x10 in x 12 in with a print layer thickness of 0.007 in.
The Dimension sst 1200es has a build envelope of 10 in x10 in x 12 in with a print layer thickness of 0.013 in.
The Dimension Elite has a build envelope of 8 in x 8 in x 12 in.
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PLASTIC PRINTERS
These printers are manufactured by Stratasys and allow us to print 3D objects in ABS.
The Fortus 250mc has a build envelope of 10 in x10 in x 12 in with a print layer thickness of 0.007 in.
The Dimension sst 1200es has a build envelope of 10 in x10 in x 12 in with a print layer thickness of 0.013 in.
The Dimension Elite has a build envelope of8 in x 8 in x 12 in.
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MODEL 7322 HTHP CONSISTOMETER
Model 7322 HPHT Consistometer is designed to test cement thickening behavior under a variety of downhole conditions. Designed with laboratory efficiency and ease of operation as major goals which is to minimize the two largest contributors to instrument downtime: the cool-down time between tests and routine maintenance.
Operational Specification:
Maximum Temperature : 400ºF / 204ºC
Maximum Pressure : 22,000 psi / 150 MPa
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MODEL 7322 HTHP CONSISTOMETER
Model 7322 HPHT Consistometer is designed to test cement thickening behavior under a variety of downhole conditions. Designed with laboratory efficiency and ease of operation as major goals which is to minimized the two largest contributors to instrument downtime: the cool-down time between tests and routine maintenance.
Operational Specification:
Maximum Temperature : 400ºF / 204ºC
Maximum Pressure : 22,000 psi / 150 MPa
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DUAL CELL HTHP CURING CHAMBER
The curing chambers cover a wide range of operational temperatures and pressures to simulate a wide variety of downhole conditions during the curing process. It is necessary to determine the amount of time required for a cement to develop compressive strength so that drilling/production operations can be resumed as quickly as possible. The goal is to design a slurry that can quickly develop compressive strength so that the "waiting on cement" time may be minimized.
Operational Specification:
Maximum Temperature : 600ºF / 316ºC
Maximum Pressure : 5000 psi / 35.1 MPa
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DUAL CELL HTHP CURING CHAMBER
The curing chambers cover a wide range of operational temperatures and pressures to simulate a wide variety of downhole conditions during the curing process. It is necessary to determine the amount of time required for a cement to develop compressive strength so that drilling/production operations can be resumed as quickly as possible. The goal is to design a slurry that can quickly develop compressive strength so that the "waiting on cement" time may be minimized.
Operational Specification:
Maximum Temperature : 600ºF / 316ºC
Maximum Pressure : 5000 psi / 35.1 MPa
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HEAT FLOW EXPERIMENT
This setup is used to understand modeling of a thermal system from experimental data, and implement a temperature control system. The objective is to maintain a certain temperature within the duct.
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HEAT FLOW EXPERIMENT
This setup is used to understand modeling of a thermal system from experimental data, and implement a temperature control system. The objective is to maintain a certain temperature within the duct.
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COUPLE TANKS SYSTEM
This setup is used to learn about modeling of fluid system, and PID control design. The objective is to maintain a certain water height in the lower tank, while controlling a pump that pumps water in to the upper tank.
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COUPLE TANKS SYSTEM
This setup is used to learn about modeling of fluid system, and PID control design. The objective is to maintain a certain water height in the lower tank, while controlling a pump that pumps water in to the upper tank.
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DC Power Supply
DC Power Supply supplies power to an electrical load with voltage 0-32V and current 0-3A.
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WEBCAM
Webcam and tracking system takes real time measurements of position, velocity and acceleration of objects.
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Data Acquisition (DAQ)
Data Acquisition (DAQ) unit takes measurement of voltage.
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COMPUTER NUMERIC CONTROL
(CNC)
Computer Numeric Control (CNC) controls the motion of objects on the air hockey table in 3D.
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TRANSIENT CONDUCTION
Demonstrates the effect of material, shape, and size on the change of temperature with respect to time.
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TRANSIENT CONDUCTION
Demonstrates the effect of material, shape, and size on the change of temperature with respect to time.
### Tooltip
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## Media
### Subtitle
panorama_8BB5A9D7_8180_8364_41AC_3C8924DBA475.subtitle = This is where all the deans’ offices are located.
panorama_8BB5FB76_8180_8724_41C5_DECBF55CDA10.subtitle = This is where all the deans’ offices are located.
### Title
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panorama_4CC66ECA_6C18_F357_41D4_72D0AE3CAD40.label = Center for Teaching & Learning
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panorama_576B894C_C09F_EF46_41DC_B8579F0F3209.label = ECEN Lab 024
panorama_7922C2AB_70AD_ECCB_41D8_38166243FF29.label = Campus
panorama_7925BC9F_70AC_74CA_41D4_D4C4FC490533.label = Student Lounge
panorama_7925BDC6_70AC_54BA_41DA_8AC4F88B4344.label = Office of Admissions
panorama_7925E02B_70AD_ABCA_41DA_40040059A987.label = Corridor-Admissions/Records
panorama_8500EF2E_BC58_9223_41C6_5C8D47D02862.label = MEEN Lab 050
panorama_86344A0C_8D29_9475_41DA_E878DF693E10.label = MEEN Lab 150
panorama_86345415_8D2E_9C97_41C8_B818C3EFE020.label = PETE Lab 205 - Pano 2
panorama_86347C58_8D29_8C9D_41DB_3C41EF3D30DC.label = MEEN Lab 050A
panorama_863482F0_8D29_B5AD_41DE_045173DB8035.label = MEEN Lab 150 - Pano 2
panorama_86348DF4_8D29_8F95_41D5_9792EAE7A28D.label = PETE Lab 205
panorama_8634B083_8D29_9473_414F_ED12A51B15E2.label = MEEN Program Faculty Office
panorama_86355F95_8D2A_8B96_41A7_FDBFB8154F32.label = CHEN Lab 110 - Pano 2
panorama_86358D37_8D2E_8C93_41D9_464DDFFAC4EB.label = PETE Lab 305
panorama_86359A49_8D2E_B4FF_41E0_929B7CC638E1.label = PETE Lab 205 - Pano 3
panorama_8635A65C_8D2E_9C95_41D0_AE7943341154.label = PETE Lab 304 - Pano 2
panorama_8635E05C_8D2E_F495_41C2_A3BAACE99B1E.label = PETE Lab 304
panorama_8636968F_8D2A_FC72_41BD_0AD1BA78EFA2.label = CHEN Program Faculty Office
panorama_8636C3F0_8D2A_9BAE_41DF_2113F0C55CE5.label = ECEN Lab 024 - Pano 2
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panorama_863732AF_8D2B_B5B3_41BF_8941590A4D7D.label = ECEN Lab 037 - Pano 2
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panorama_86376741_8D2B_9CEE_41CB_F86BB994B4A9.label = ECEN Lab 245
panorama_86378D97_8D2A_8F92_41D9_ABAABCFD5D53.label = ECEN Program Faculty Office
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panorama_8637B150_8D2A_B4ED_41BD_1DCD630DD457.label = MEEN Lab 048
panorama_8637BBB3_8D2A_8B93_41D4_FCEF8213DCCE.label = MEEN Lab 045 - Pano 2
panorama_8637CD54_8D2B_8C96_41D2_E804EF269CAC.label = ECEN Lab 037
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panorama_8BB446AB_8181_812C_41B7_0F8FE8926824.label = Lecture Hall 144
panorama_8BB447BE_8181_8F24_41C3_B170B7703B83.label = Corridor-CTL
panorama_8BB4A68F_8181_81E5_41C3_97371CB0F986.label = ECEN Lab 217
panorama_8BB4A6CE_8181_8167_4198_EBCF42964759.label = Corridor-LH238
panorama_8BB4C686_8181_81E7_41C5_B0B7B243C787.label = Lecture Hall 143
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panorama_91D4E4DA_BC38_7663_41C1_6FEBA9A9B7AA.label = PETE Program
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panorama_DE88BF34_C423_8322_41E4_A44F7D400BE8.label = PETE Program Faculty Office