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Hamidreza Modares (Instructor) - Grade Details

(with breakdown by course)


Hamidreza Modares - All Courses

Average Grade - 3.381
Median Grade - 3.5
890 total students

Latest grades from Fall 2024

Hamidreza Modares - Overview

Course Number Grade Info Latest Grade Data
ME 451 Average Grade - 3.396
Median Grade - 3.5
Fall 2023
ECE 851 Average Grade - 3.867
Median Grade - 4.0
Fall 2024
ME 851 Average Grade - 3.955
Median Grade - 4.0
Fall 2024
ME 391 Average Grade - 2.842
Median Grade - 3.0
Spring 2019
ME 859 Average Grade - 3.800
Median Grade - 4.0
Spring 2020

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ECE 851 - Linear Systems and Control

State models and their stability, controllability, and observability properties. Finding minimal realizations of transfer functions. Design of state and output feedback controllers. Design of state observers. LQ regulator and the Kalman filter. Time-varying systems.

Average Grade - 3.867
Median Grade - 4.0
15 total students

Latest grades from Fall 2024

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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 - 2.842
Median Grade - 3.0
57 total students

Latest grades from Spring 2019

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ME 451 - Control Systems

Mathematical modeling of dynamic systems. Standard feedback control formulation. Transient and sinusoidal steady state analysis. Time and frequency domain controller synthesis.

Average Grade - 3.396
Median Grade - 3.5
792 total students

Latest grades from Fall 2023

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ME 851 - Linear Systems and Control

State models and their stability, controllability, and observability properties. Finding minimal realizations of transfer functions. Design of state and output feedback controllers. Design of state observers. LQ regulator and the Kalman filter. Time-varying systems.

Average Grade - 3.955
Median Grade - 4.0
11 total students

Latest grades from Fall 2024

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ME 859 - Nonlinear Systems and Control

Second-order systems and fundamental properties of solutions. Lyapunov stability, input-output stability, passivity, absolute stability, and linearization. Design of feedback controllers using integral control, feedback linearization, sliding mode control, Lyapunov redesign, passivity-based control, and recursive methods. Applications to electrical and mechanical systems.

Average Grade - 3.800
Median Grade - 4.0
15 total students

Latest grades from Spring 2020

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