Boas, Mathematical Methods in the Physical Sciences, 3rd Edition Chapter 1. Infinite Series, Power Series Section 4. Convergent and Divergent Series Solutions

# Category: Textbooks

## Shankar (2nd), Chapter 01. Section 06. Matrix Elements of Linear Operators

Shankar, Principles of Quantum Mechanics, 2nd Edition Chapter 1. Mathematical Introduction Section 1. 6. Matrix Elements of Linear Operators Summary

## Shankar (2nd), Chapter 01. Section 05. Linear Operators

Shankar, Principles of Quantum Mechanics, 2nd Edition Chapter 1. Mathematical Introduction Section 1. 5. Linear Operators Summary

## Shankar (2nd), Chapter 01. Section 04. Subspaces

Shankar, Principles of Quantum Mechanics, 2nd Edition Chapter 1. Mathematical Introduction Section 1. 4. Subspaces Summary

## Shankar (2nd), Chapter 01. Section 03. Dual Spaces and the Dirac Notation

Shankar, Principles of Quantum Mechanics, 2nd Edition Chapter 1. Mathematical Introduction Section 1. 3. Dual Spaces and the Dirac Notation Summary

## Shankar (2nd), Chapter 01. Section 02. Inner Product Spaces

Shankar, Principles of Quantum Mechanics, 2nd Edition Chapter 1. Mathematical Introduction Section 1. 2. Inner Product Spaces Summary

## Shankar (2nd), Chapter 01. Section 01. Linear Vector Spaces: Basis

Shankar, Principles of Quantum Mechanics, 2nd Edition Chapter 1. Mathematical Introduction Section 1. 1. Linear Vector Spaces: Basis Summary

## Goldstein (3rd Edition), Chapter 01. Section 01. Mechanics of a Particle

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## Boas (3rd Edition), Chapter 01. Section 04. Convergent and Divergent Series

Boas, Mathematical Methods in the Physical Sciences, 3rd Edition Chapter 1. Infinite Series, Power Series Section 4. Convergent and Divergent Series Summary

## Boas (3rd Edition), Chapter 01. Section 03. Applications of Series

Boas, Mathematical Methods in the Physical Sciences, 3rd Edition Chapter 1. Infinite Series, Power Series Section 3. Applications of Series Summary