Geoffrey D Recktenwald (Instructor) - Grade Details
(with breakdown by course)
Geoffrey D Recktenwald - All Courses
Average Grade - 2.503
Median Grade - 3.0
Latest grades from Fall 2025
Geoffrey D Recktenwald - Overview
| Course Number | Grade Info | Number of Students | Latest Grade Data | Breakdown | ||
|---|---|---|---|---|---|---|
| EGR 811 | Average Grade - 3.974 Median Grade - 4.0 |
19 | Fall 2017 | |||
| ME 222 | Average Grade - 2.315 Median Grade - 2.5 |
3293 | Fall 2025 | |||
| ME 361 | Average Grade - 2.455 Median Grade - 2.5 |
2556 | Summer 2025 | |||
| ME 370 | Average Grade - 2.677 Median Grade - 2.5 |
218 | Spring 2025 | |||
| ME 391 | Average Grade - 2.921 Median Grade - 3.0 |
537 | Fall 2017 | |||
| ME 410 | Average Grade - 3.630 Median Grade - 4.0 |
146 | Fall 2025 | |||
| ME 440 | Average Grade - 2.742 Median Grade - 2.5 |
60 | Fall 2025 | |||
| ME 461 | Average Grade - 2.747 Median Grade - 3.0 |
148 | Fall 2017 | |||
| ME 464 | Average Grade - 2.931 Median Grade - 3.0 |
195 | Spring 2022 | |||
| ME 481 | Average Grade - 3.736 Median Grade - 4.0 |
89 | Fall 2025 | |||
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EGR 811 - Foundations of Engineering Education
Introduces the theoretical foundations of engineering education, student learning theories, educational research, and instructional design. How to effectively teach, manage, and assess student performance.
Average Grade - 3.974
Median Grade - 4.0
Latest grades from Fall 2017
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ME 222 - Mechanics of Deformable Solids
Tension compression and shear stresses. Axially loaded bars. Torsion of circular shafts. Beam theory. Combined stresses. Mohr's circles. Columns.
Average Grade - 2.315
Median Grade - 2.5
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ME 361 - Dynamics
Kinematics of particles, rigid bodies, and mass moments of inertia. Kinetics of particles and rigid bodies. Energy and momentum principles.
Average Grade - 2.455
Median Grade - 2.5
Latest grades from Summer 2025
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ME 370 - Mechanical Design and Manufacturing I
Engineering design of machine elements and mechanical systems. Computer-based analysis in support of design. Design for static and fatigue strength, deflection, and reliability.
Average Grade - 2.677
Median Grade - 2.5
Latest grades from Spring 2025
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ME 391 - Mechanical Engineering Analysis
Analytical and numerical methods for the modeling and analysis of mechanical engineering systems. Applications to vibrating elements, heat transfer, linear springs, and coupled spring-mass systems.
Average Grade - 2.921
Median Grade - 3.0
Latest grades from Fall 2017
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ME 410 - Heat Transfer
Steady state and transient heat conduction. Natural and forced convection based on boundary layer theory. Application of Nusselt number correlations. Radiant heat transfer principles and applications including radiation networks.
Average Grade - 3.630
Median Grade - 4.0
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ME 440 - Aerospace Propulsion
Fundamentals of thrust and propulsion systems, including gas turbines, ramjets, rockets and electric devices. Compressible flow through nozzles and shocks. Cycle analysis of airbreathing jet propulsion and chemical rocket propulsion. Performance and design of propulsion components.
Average Grade - 2.742
Median Grade - 2.5
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ME 461 - Mechanical Vibrations
Modeling and analysis of oscillatory phenomena found in linear discrete and continuous mechanical systems.
Average Grade - 2.747
Median Grade - 3.0
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ME 464 - Intermediate Dynamics
Kinematics and kinetics of particle and rigid body systems. Virtual work, Lagrangian method, and Euler equations. Basic vibrations of discrete and continuous systems. Elementary wave propagation.
Average Grade - 2.931
Median Grade - 3.0
Latest grades from Spring 2022
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ME 481 - Mechanical Engineering Design Projects
Application of design concepts in mechanical engineering. Problem definition, design specifications. Modeling and analysis methods. Design optimization, economics, reliability. Manufacturing considerations in design. Capstone design projects.
Average Grade - 3.736
Median Grade - 4.0
Latest grades from Fall 2025
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