Class 12 Exam  >  Class 12 Questions  >  1.Electric Field Intensity at various points ... Start Learning for Free
1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.?
Verified Answer
1.Electric Field Intensity at various points due to a uniformly charge...
It is easy to show that an area of ​​ surface density causes only one electric field (outside the sphere) in the form of a point charge at the center (use Gauss law and symmetry). Similarly Gauss law predicts that continuous surface density area does not cause any area within it. So if you calculate E (r), then you can imagine all the charges inside the ball, which are located in the center.
This question is part of UPSC exam. View all Class 12 courses
Explore Courses for Class 12 exam
1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.?
Question Description
1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.? for Class 12 2024 is part of Class 12 preparation. The Question and answers have been prepared according to the Class 12 exam syllabus. Information about 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.? covers all topics & solutions for Class 12 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.?.
Solutions for 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.? in English & in Hindi are available as part of our courses for Class 12. Download more important topics, notes, lectures and mock test series for Class 12 Exam by signing up for free.
Here you can find the meaning of 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.? defined & explained in the simplest way possible. Besides giving the explanation of 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.?, a detailed solution for 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.? has been provided alongside types of 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.? theory, EduRev gives you an ample number of questions to practice 1.Electric Field Intensity at various points due to a uniformly charged spherical shell (thin & thick both) 2.Electric field intensity due to a thin infinite plane sheet of charge If anyone has these derivations kindly send.? tests, examples and also practice Class 12 tests.
Explore Courses for Class 12 exam
Signup for Free!
Signup to see your scores go up within 7 days! Learn & Practice with 1000+ FREE Notes, Videos & Tests.
10M+ students study on EduRev