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PHYS331 Fall 2008 small logo

Dr. Marble

TECP

Texas Electronic Coalition is a consortium of Physics Departments in the Texas A&M University System dedicated to providing access to quality physics courses to students across Texas. Videos of these classes taught by TECP instructors over the Trans Texas Video System are maintained on this site in order to provide students in these classes with an opportunity to view classes that they may missed due to illness or other conflicts and for review to prepare for exams.

Mechanics I

Particle dynamics in one, two, and three dimensions; conservation laws; dynamics of a
system of particles; motion of rigid bodies; central force problems.

Introduction

Vectors: 1.1-1.7

Coordinate Transformations: 1.8-1.12

Newton's Laws and Free Body Diagrams

Ref. Frames, Constant Force Problems

Ref. Frames, Time Dep. Forces, Energy

Position Dependent Foces, Energy, etc

Velocity Dependent Forces, Drag

2nd Order DEQ Properties, Spring Mass

Spring Mass Continued, Damped SHO

Critical Damped SHO and Forced SHO: Forced SHO, Energy Analysis and Q
Q value, Phase Space, Fourier Work/Line Integrals, Gradient, Generalized Co.
Curl, Conservative Forces Example Problems on Potential, Work, etc
Seperable Eqtns., Constrained Motion Accelerated (Rotation) Refrence Frames
Problem Solving Session With Dr. Cox Non-Inertial Frames #2
Non-inertial Frame Problems Non-inertial Frame Problems & Gravitatation I
Spherical Mass Shell, Gravit. Potential

Gravit. Potential & Kepler's Laws

Kepler's 3rd Law, Orbital Equation Energy Equation of an Orbit, Center-of-Mass
Center-of-Mass, Linear Momentum COM Examples & Angular Momentum
Angular Momentum (cont) & Kinetic Energy

Moment of Inertia

Parallel Axis & Perpendicular Axis Theorems

Rolling Without Slipping, Reduced Mass

Collisions I (Elastic Recoil Detection Analysis)

Collisions II (Rutherford Backscattering)

Generalized Coordinates, Constraints Lagrangian Mechanics
Lagrangian Mechanics Problems Lagrangian Multipliers & Intro to Hamiltonian
Hamiltonian Mechanics Problems & Review Wrapup; Final Questions; Normal Modes
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