I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field) Q. 3.65
I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field)
Conductors and Dielectrics in an Electric Field is significant from the perspective of scoring high in IIT JEE. 2 to 3 questions asked every year in the JEE Main exam from Conductors and Dielectrics in an Electric Field. IE Irodov Conductors and Dielectrics in an Electric Field will be of great help to the IIT JEE students.
Q. 3.65 A system consists of two concentric conducting spheres, with the inside sphere of radius a carrying a positive charge q1. What charge q5 has to be deposited on the outside sphere of radius b to reduce the potential of the inside sphere to zero? How does the potential cp depend in this case on a distance r from the centre of the system? draw the approximate plot of this dependence.
Complete I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field) Q 3.65 Video Solution -
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Electrodynamics
Electrodynamics is defined as the branch of mechanics dealing with the interaction of electric currents with magnetic fields or other electrical currents.
Electrodynamics is a foundational theory that every physics student and electrical engineering student knows well. The subject starts with writing Maxwell's equations and the constitutive relationships between the various fields, but even here there is a multitude of materials in which the theory can be applied, and surprising new phenomena can be found within the confines of ordinary classical electrodynamics.
Conductors and Dielectrics in an Electric Field
Conductors, and Dielectrics. Conductors: substances that have free carrier axes called conductors. Examples of conductors include metallic substances such as copper, silver, gold, aluminum, iron, mercury and so on. Insulators: Substances without free carriers are called isolators or dielectrics.
Dielectric is an electrical insulator that can be polarized by the electrical field applied. When a dielectric material is placed in an electrical field, electrical charges do not flow through the material as they do in an electrical conductor, but only slightly shift from their average position of equilibrium which causes dielectric polarization.
Important Conductors and Dielectrics in an Electric Field Questions You Should Not Miss:
I E Irodov Topics Of Conductors and Dielectrics in an Electric Field | I E Irodov Solutions |
I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field) Q. 3.65 | Video Solutions |
I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field) Q. 3.76 | Video Solutions |
I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field) Q. 3.78 | Video Solutions |
I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field) Q. 3.86 | Video Solutions |
I E Irodov Electrodynamics (Conductors and Dielectrics in an Electric Field) Q. 3.88 | Video Solutions |
Important Topics Covered in Electrodynamics IE Irodov:
In electrodynamic equations, the Coulomb constant, the electric force constant, or the electrostatic constant (denoted ke, k, or K), is a constant of proportionality. The value of this constant depends on the medium where the objects being charged are immersed in.
Following topics are covered in I E Irodov solutions:
I E Irodov Topics | I E Irodov Solutions |
Constant Electric Field in Vacuum | Video Solutions |
Electric Capacitance and Energy of an Electric Field | Video Solutions |
Electric Current | Video Solutions |
Constant Magnetic Field and Magnetics | Video Solutions |
Electromagnetic Induction and Maxwell's Equations | Video Solutions |
Motion of Charged Particles in Electric and Magnetic Fields | Video Solutions |
Important IE Irodov Video Solutions You Should Not Miss:
- Physical Fundamentals of Mechanics
- Thermodynamics and Molecular Physics
- Oscillations and Waves
- Optics
- Atomic and Nuclear Physics
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