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Title & Summary Author Updated

### Features of Proofs Programme

The project team :  Ranjan Shrivastava and A. K. Kapoor.

Based on a work at http://0space.org/users/kapoor.

 This work is being pursued with a philosophy of working without attachment expressed beautifully by Sri RamKrishna Paramhansa who once said, “To work without attachment is to work without the expectation of reward or fear of any punishment in this world or the next. Work so done is a means to the end, and God is the end.”
kapoor 18/08/18

### LectureNotes

Based on the lectures givrn at CMIon thermal pysics.

KPN 17/10/18

### LectureNotes

Based on the lectures givrn at CMIon thermal pysics.

KPN 17/10/18

### Mechanics (2012) : A Course given at Univrsity of Hyderabad

Summary (or abstract) not available for this node.
kapoor 07/09/18

### Notes for my reference Content Types and More ....

The content is made available as:
QM Resource Repsository
QM Special Purpose Packages

kapoor 25/08/18

### Part-I Rise of Quantum Mechanics (2017)

Summary (or abstract) not available for this node.
kapoor 05/05/18

### Part-IV Lecture Notes Spherically Symmetric Potentials in 3 Dimensions

Summary (or abstract) not available for this node.
kapoor 03/08/17

### PDE Lecture Notes-01 Separation of Variables

Summary (or abstract) not available for this node.
kapoor 03/05/18

### Problem-EM-01001

A 100 eV electron is fired directly towards a metal plate that has a surface charge density of $$-2.0\times10^{-6} \text{coul/m}^2$$. Form what distance must the electron be fired so that it just fails to strike the plate?

kapoor 15/10/18

### Problem-EM-02003

 Two spheres each of radius $R$ are placed so that they partially overlap. The charge densities in the overlap region is zero and in the two non overlapping regions is $+\rho$ and $-\rho$ respectively as shown in figure. The separation between the centers of the spheres is $D$. Find the electric field in the two non-overlap regions.
kapoor 19/10/18