UsefulLinks
1. Introduction to Computational Physics
2. Mathematical Foundations
3. Programming Fundamentals
4. Computer Arithmetic and Error Analysis
5. Root Finding Methods
6. Numerical Differentiation
7. Numerical Integration
8. Linear Systems
9. Eigenvalue Problems
10. Ordinary Differential Equations
11. Partial Differential Equations
12. Monte Carlo Methods
13. Molecular Dynamics
14. Data Analysis and Visualization
15. Applications in Classical Mechanics
16. Applications in Electromagnetism
17. Applications in Quantum Mechanics
18. Applications in Statistical Mechanics
19. Applications in Fluid Dynamics
20. High-Performance Computing
  1. Physics
  2. Applied and Interdisciplinary Physics

Computational Physics

1. Introduction to Computational Physics
2. Mathematical Foundations
3. Programming Fundamentals
4. Computer Arithmetic and Error Analysis
5. Root Finding Methods
6. Numerical Differentiation
7. Numerical Integration
8. Linear Systems
9. Eigenvalue Problems
10. Ordinary Differential Equations
11. Partial Differential Equations
12. Monte Carlo Methods
13. Molecular Dynamics
14. Data Analysis and Visualization
15. Applications in Classical Mechanics
16. Applications in Electromagnetism
17. Applications in Quantum Mechanics
18. Applications in Statistical Mechanics
19. Applications in Fluid Dynamics
20. High-Performance Computing
20.
High-Performance Computing
20.1.
Parallel Computing Concepts
20.1.1.
Flynn's Taxonomy
20.1.2.
Amdahl's Law
20.1.3.
Scalability
20.2.
Shared Memory Programming
20.2.1.
OpenMP
20.2.2.
Thread Safety
20.2.3.
Load Balancing
20.3.
Distributed Memory Programming
20.3.1.
Message Passing Interface
20.3.2.
Point-to-Point Communication
20.3.3.
Collective Communication
20.4.
GPU Computing
20.4.1.
CUDA Programming
20.4.2.
Memory Hierarchy
20.4.3.
Kernel Optimization
20.5.
Performance Optimization
20.5.1.
Profiling Tools
20.5.2.
Memory Optimization
20.5.3.
Vectorization
20.5.4.
Cache Optimization
20.6.
Workflow Management
20.6.1.
Job Scheduling
20.6.2.
Resource Management
20.6.3.
Data Management
20.6.4.
Reproducibility

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1. Introduction to Computational Physics

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