Tentative PHY 142 Course Schedule: Spring 2008

 

Week

Lecture

(MWF 11:45-12:40) IN P-124

Recitation

(Th 2:20- 3:15)

in P-124

Lab

(Th 3:20-5:20) IN A-116

mastering Physics: (NormalLY Due

Th 2:00)

Reading from TexT

Jan 28

Mon: Why Physics, vector, scalar fields

Wed: Gravitational, Electric fields

Fri: Charge, dipoles, continuous charge distributions

No Recitation

NO LAB

Lab 0: Reading Assignment: Error Analysis

HW0: Introduction to Mastering Physics

20

Feb 4

Mon:Electric Potential, E from V
 Gauss' Law

Wed: Gauss's Law

Fri: More Gauss's Law

Problem Solving Session 1: Line and Surface Integrals

Lab 1: Oscilloscope

HW1: Electric Charge, Coulomb’s Law

21,22

Feb 11

Mon: Capacitors Intro

Wed: Conductors, Capacitors

Fri: Dielectrics

Problem Solving Session 2: Electric Field

Lab 2: Electric Field

HW2: Gauss’ Law, Potential Energy, Potential, and equipotential surfaces

23

Feb 18

Mon: Capacitor Network, Current, Resistance, DC Circuits

Wed: Kirchhoff's Rules

Fri: No Lecture - Snow Day

Problem Solving Session 3: Gauss’ Law

Lab 3: Capacitors

HW3: Capacitors

24,25

Feb 25

Mon: RC Circuits, Magnetic Fields

Wed: Magnetic Fields from Moving Charges

Fri: Biot-Savart Law

Problem Solving Session 4: Capacitance

Lab 4: Ohm’s Law

HW4: Current, Resistance, Circuits, Kirchoff’s Laws

26

Mar 3

Mon: Dipoles, levitation

Wed: Exam Review

Fri: Ampere’s Law

Midterm Exam 1: Thursday Mar 6 in Recitation

NO LAB

Makeup period for labs 1-4

NO HW

 

Mar 10

Mon: Discuss Midterm #1, Faraday’s Law

Wed: No Lecture

Fri: More Faraday's Law

Problem Solving Session 5: Magnetic Torque and Moments

NO LAB

HW5: Magnetic Fields, Magnetic forces, Ampere's Law

27

Mar 17

Spring Break

 

 

 

 

Mar 24

Mon: Eddy Currents, Magnetic Braking, and Levitation using Superconductors

Wed: Transformers, Magnetic Materials, Inductance

Fri: Inductance and LR Circuits, Energy in Inductors

Problem Solving Session 6: Ampere's Law

Lab 5: Magnetic Force I

HW6: Induction, Faraday's Law, Lenz's Law

 

Mar 31

Mon: LC Circuits

Wed: RLC Circuits, AC Circuits

Fri: Phasors, Resonance Displacement Current

Problem Solving Session 7: Faraday's Law

Lab 6: Magnetic Force II

HW7: Inductance, RL, LC, and RLC circuits

28

Apr 7

Mon: Maxwell’s Equations, EM Waves

Wed: Poynting Vector, Radiation Pressure, Standing Waves

Fri: EM Standing Waves, Measuring the Speed of Light with a Microwave Oven

Problem Solving Session 8: Driven LRC Circuits

Lab 7: Induction

HW8 Part 1: AC Circuits

29

Apr 14

Mon: Making EM Waves

Wed: Exam Review

Fri: Reflection, Refraction

Midterm Exam 2: Thursday Apr 17 in Recitation

NO LAB

(We'll probably skip lab 8)

NO HW

 

Apr 21

Mon: No Lecture

Wed: Discuss Midterm #2

Thurs (during usual recitation time): Polarization, Huygen's Principle

Fri (during usual lecture time): Problem Solving Session 9: Displacement Current, Poynting Vector

Makeup period for labs 5-7

HW8 Part 2: EM Waves

30

Apr 28

Mon: Ray Optics - Mirrors

Wed: Ray Optics - Lenses

Thurs (during usual recitation time): Lensmaker's Equation, Ray Tracing, Huygen's Principle

Fri: Interference

 

Lab 9: Resonance

HW9: Geometrical Optics

31,32

May 5

Mon: Diffraction

Wed: The Structure of Space and Time
Fri: Concept Review/Overview

Problem Solving Session 10: Interference

Lab 10: Optics + Makeup period for lab 9

(by special arrangement)

HW10: Physical Optics

33

May 12

Mon: Sample Exam Review