Electricity and Magnetism

Slides:



Advertisements
Similar presentations
Two questions: (1) How to find the force, F on the electric charge, Q excreted by the field E and/or B? (2) How fields E and/or B can be created?
Advertisements

© 2012 Pearson Education, Inc. A spherical Gaussian surface (#1) encloses and is centered on a point charge +q. A second spherical Gaussian surface (#2)
C. less, but not zero. D. zero.
Phy 213: General Physics III Chapter 23: Gauss’ Law Lecture Notes.
Nadiah Alanazi 1 Chapter 24 Gauss’s Law 24.1 Electric Flux 24.2 Gauss’s Law 24.3 Application of Gauss’s Law to Various Charge Distributions 24.4 Conductors.
Electricity Electric Flux and Gauss’s Law 1 Electric Flux Gauss’s Law Electric Field of Spheres Other Gaussian Surfaces Point Charges and Spheres.
Hw: All Chapter 5 problems and exercises. Test 1 results Average 75 Median 78 >90>80>70>60>50
Hw: All Chapter 4 problems and exercises Chapter 5: Pr. 1-4; Ex. 1,2 Reading: Chapter 5.
Lecture 19 Exam II Average: Lecture 19 Today Brief review of Electrostatics (I) 1.Maxwell equations 2.Charge and current distributions.
The Magnetic Field The force on a charge q moving with a velocity The magnitude of the force.
Average 68.4 Median Highest 100 Lowest 26 Section Section Section Section
Outline Applications of Gauss’s Law - The single Fixed Charge -Field of a sphere of charge -Field of a spherical shell -A Line of Charge Conductors and.
2D case: If or then 2 or 3D cases: Several dimensions: U(x,y,z) Compact notation using vector del, or nabla: Another notation: Partial derivative is.
Hw: All Chapter 5 problems and exercises ”Gravitation cannot be held responsible for people falling in love.“ Albert Einstein.
Slide 1 Electric Field Lines 10/29/08. Slide 2Fig 25-21, p.778 Field lines at a conductor.
The Magnetic Field The force on a charge q moving with a velocity The magnitude of the force.
Exam Average 78.4 Median 84 Outline Applications of Gauss’s Law - The single Fixed Charge -Field of a sphere of charge -Field of a.
Hw: All Chapter 4 problems and exercises Chapter 5: Pr. 1-4; Ex. 1,2 Reading: Chapter 4.
Hw: All Chapter 5 problems and exercises. Outline Applications of Gauss’s Law - The single Fixed Charge -Field of a sphere of charge -Field of a spherical.
Hw: All Chapter 4 problems and exercises Chapter 5: Pr. 1-4; Ex. 1,2 Reading: Chapter 4.
Outline Area vector Vector flux More problems Solid angle Proof of Gauss’s Law.
Charles Allison © 2000 Chapter 22 Gauss’s Law HW# 5 : Chap.22: Pb.1, Pb.6, Pb.24, Pb.27, Pb.35, Pb.46 Due Friday: Friday, Feb 27.
© 2012 Pearson Education, Inc. { Chapter 22 Applying Gauss’s Law.
Copyright © 2012 Pearson Education Inc. PowerPoint ® Lectures for University Physics, Thirteenth Edition – Hugh D. Young and Roger A. Freedman Lectures.
Q21. Gauss’ Law. 1.A particle with charge 5.0-  C is placed at the corner of a cube. The total electric flux in N  m 2 /C through all sides of the cube.
1 Gauss’s Law For r > a Reading: Chapter Gauss’s Law Chapter 28.
Dr. Jie ZouPHY Chapter 24 Gauss’s Law (cont.)
Chapter 27. A uniformly charged rod has a finite length L. The rod is symmetric under rotations about the axis and under reflection in any plane containing.
Hw: All Chapter 5 problems and exercises. Outline Applications of Gauss’s Law - The single Fixed Charge -Field of a sphere of charge -Field of a spherical.
Q22.1 A spherical Gaussian surface (#1) encloses and is centered on a point charge +q. A second spherical Gaussian surface (#2) of the same size also encloses.
Chapter 28 Gauss’s Law 28.1 to 28.4.
Unit 4 Day 11 – Gauss’s Law for Magnetism
Problem 3 p. 45 Electric potential on ring’s axis From Chapter 2:
Charles Allison © 2000 Chapter 22 Gauss’s Law.. Charles Allison © 2000 Problem 57.
Gauss’s Law The total flux of electric field out of any closed surface is equal to the charge contained inside the surface divided by.
Electric Potential (III)
24.2 Gauss’s Law.
Electricity and Magnetism
Instructor: Dr. Tatiana Erukhimova
Capacitance (Chapter 26)
Electricity and Magnetism
Electricity and Magnetism
Electricity and Magnetism
Electric flux, Gauss’s law
Electric flux, Gauss’s law
Reading: Chapter 28 For r > a Gauss’s Law.
Gauss’s Law.
Electricity and Magnetism
TOPIC 3 Gauss’s Law.
Electricity and Magnetism
An insulating spherical shell has an inner radius b and outer radius c
E. not enough information given to decide Gaussian surface #1
C. less, but not zero. D. zero.
Electricity and Magnetism
Chapter 22 Gauss’s Law HW 4: Chapter 22: Pb.1, Pb.6, Pb.24,
Gauss’s Law Chapter 24.
Electricity and Magnetism
The Electric Flux The electric flux measures the amount of electric field passing through a surface of area A whose normal to the surface is tilted at.
Electricity and Magnetism
Electricity and Magnetism
Electricity and Magnetism
Phys102 Lecture 3 Gauss’s Law
Chapter 22 Gauss’s Law The Study guide is posted online under the homework section , Your exam is on March 6 Chapter 22 opener. Gauss’s law is an elegant.
Gauss’s Law.
Physics 1161 Pre-Lecture 4 Charges on Conductors Electric Flux
Electricity and Magnetism
Electricity and Magnetism
Electricity and Magnetism
Electricity and Magnetism
Electricity and Magnetism
Presentation transcript:

Electricity and Magnetism Physics 208 Dr. Tatiana Erukhimova Lecture 11

Gauss’s Law The total flux of electric field out of any closed surface is equal to the charge contained inside the surface divided by .

The flux of

Electric flux through a sphere A positive point charge q=3.0 C is surrounded by a sphere with radius 0.2 m centered on the charge. Find the electric flux through the sphere due to this charge.

S Definition of a solid angle does not depend on radius The largest Then

Proof of Gauss’s Law

Electric field of a single fixed charge Chasing the tail: Electric field of a single fixed charge

Conductors and insulators Charges reside at the surface of the conductor + + + + + + + + Conductor + + E=0 + + + + +

Have a great day! Hw: All Chapter 4 problems and exercises Reading: Chapter 4