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विधुत आवेश और क्षेत्र | ONE SHOT REVISION | Day 4 | Electric Charge & Field | Board Exam | Gopal Sir

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Class 12 NEET 2020 - Revision In 60 Days | Electric Fields And Charges Part -1 Quick Revision

Class 12 NEET 2020 - Revision In 60 Days | Electric Fields And Charges Part -1 Quick Revision

Class 12 NEET 2020 - Revision In 60 Days | Electric Fields And Charges Part -2 Quick Revision

Class 12 Physics Chapter 1 Electric Charges & Fields Important Questions | CBSE Board Quick Revision

Electric Due To Point Charge (बिन्दु आवेश के कारण क्षेत्र)|Electric Potential (वेधयुत विभव)|Questions (प्रश्न)|Electric Potential Due To Hollow Charged Sphere (खोखले आवेशित गोले के कारण विभव)|Potential Energy Between Two Point Charges (दो बिन्दु आवेशों के मध्य संचित ऊर्जा)|Question (प्रश्न)|Dipole (द्विध्रुव)|Potential Difference In Uniform Electric Field (एक समान क्षेत्र मे विभावांतर)|OMR

There is an insulator rod of length L and of negligible mass with two small balls of mass m and electric charge Q attached to its ends. The rod can rotate in the horizontal plane around a vertical axis crossing it ata distance L//4 from one of its ends. At first the rod is in unstabel equilbrium in a gorizontal umifrom electric field of field strenght E. Then we gently displace it from this position. Determine the maximim velocity attained by the ball taht is closer to the axis in the subsequent motion

A large charged metal sheet is placed in a uniform electric field, perpendicular to the electric field lines. After placing the sheet into the field, the electric field on the left side of the sheet is E_1 = 5 xx 10^5 Vm^(-1) and on the right it is E_2 = 3 xx 10^5 V m^(-1) . The sheet experiences a net electric force of 0.08 N. Find the area of one face of the sheet. Assume the external field to remain constant after introducing the large sheet. Use (1/(4piepsilon_0)) = 9 xx 10^(9) Nm^(2)C^(-2)

A particle of mass 1 g and charge 2. 5 xx10^(-4) C is released from rest in an electric field of 1.2 xx 10^4 NC^(-1) (a) Find the electric force and the force of gravity acting on this particle. Can one of these forces be neglected in comparison with the other for approximate analysis? (b) How long will it take for the particle to travel a distance of 40 cm? (c) What will be the speed of the particle after travelling this destance? (d) how much is the work done by electric force on the particle during this period?

After receiving the lamp, Aladdin and Abu are on their way to get out from the cave when they found a statue of Sir Hussain, one of the most powerful Royal General to walk on Earth. Below the statue is written a real life problem that Sir Hussain solved and in order to get out of the cave one must solve this riddle. Aladdin out of options starts reading the riddle- Once upon a time in the Kingdom far far away lived Sir Hussain, the chief Royal General. He was very proud of his men and he liked to invite the King to come and watch drill exer- cises which demonstrated the fighting techniques and tactics of the squad he was in charge of. But time went by and one-day Sir Hussain had a major argument with an old witch (there were rumours that the argument occurred after the general spoke badly of the witch flying techniques. That seemed to hurt the old witch very deeply). As the result of the argument, the witch put a rather strange curse upon the general. It sounded all complicated and quite harmless: "If the squared distance between some two soldiers equals to 5, then those soldiers will conflict with each other!" The drill exercises are held on a rectangular n × m field, split into nm square 1 × 1 segments for each soldier. Thus, the square of the distance between the soldiers that stand on squares (x_(1), y_(1)) and (x_(1),y_(2)) equals exactly (x_(1)-x_(2))^(2)+(y_(1)-y_(2))^(2) . Now not all nm squad soldiers can partici- pate in the drill exercises as it was before the old witch curse. Unless, of course, the general wants the soldiers to fight with each other or even worse. For example, if he puts a soldier in the square (2, 2), then he cannot put soldiers in the squares (1, 4), (3, 4), (4, 1) and (4, 3) — each of them will conflict with the soldier in the square (2, 2). Find the sum of maximum number of soldiers that can be simultaneously positioned on this field for each of the following cases i) 1002 2 ii) 451 2 iii) 780 2 iv) 121 2

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