Time independent Schrodinger equation
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Time independent Schrodinger equation

The Time-Independent Schrödinger Equation is a fundamental equation in quantum mechanics that describes the behavior of a quantum system in a stationary state, where the system’s properties do not change with time. It is derived from the more general time-dependent Schrödinger equation by assuming that the wave function can be separated into time-dependent and time-independent…

2nd law of thermodynamics

2nd law of thermodynamics

The Second Law of Thermodynamics is a fundamental principle of physics that describes the behavior of energy and entropy in thermodynamic systems. It can be stated in several equivalent ways, each of which provides insight into different aspects of thermodynamic processes. The Second Law is crucial for understanding the direction of natural processes and the…

Riemann Hypothesis

Riemann Hypothesis

The Riemann Hypothesis is one of the most famous and long-standing unsolved problems in mathematics. It is a conjecture about the distribution of the zeros of the Riemann zeta function, which is a complex function denoted by . The hypothesis is named after the German mathematician Bernhard Riemann, who first formulated it in 1859. The…

Strassen's algorithm

Strassen’s algorithm

The Strassen algorithm is an efficient algorithm for matrix multiplication that reduces the computational complexity compared to the standard algorithm. It was developed by Volker Strassen in 1969 and is particularly useful for large matrices. Standard Matrix Multiplication Complexity The standard method of multiplying two matrices requires scalar multiplications and additions, resulting in an overall…

Matrix Multiplication

Matrix Multiplication

Matrix multiplication is a fundamental operation in linear algebra where two matrices are combined to produce a third matrix. The process involves multiplying rows of the first matrix by columns of the second matrix and summing the results. Here’s a detailed explanation: Preconditions for Matrix Multiplication Matrix multiplication is only defined when the number of…

complex function

complex function

A complex function is a function that maps complex numbers to complex numbers. In other words, it takes a complex number as input and produces another complex number as output. Complex functions are a fundamental part of complex analysis, a branch of mathematics that studies functions of complex variables. Complex Numbers Recap A complex number…

Kerr metric

Kerr metric

The Kerr metric describes the geometry of spacetime around a rotating, uncharged black hole. It generalizes the Schwarzschild metric by including the effects of the black hole’s angular momentum (rotation). The Kerr metric is a solution to Einstein’s field equations in general relativity and is crucial for understanding the behavior of objects in the vicinity…

Schwarzschild metric

Schwarzschild metric

The Schwarzschild metric describes the space-time geometry surrounding a non-rotating, uncharged, spherically symmetric mass such as a static black hole. It is the solution to Einstein’s field equations in the context of general relativity for such a mass. Schwarzschild Metric In spherical coordinates , the Schwarzschild metric is expressed as: where: Components Explained Key Features…

rotating black holes vs stationary black holes
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rotating black holes vs stationary black holes

Rotating and stationary black holes are two different types of black holes characterized by their angular momentum. The distinction between them lies primarily in whether or not they possess rotation (angular momentum). 1. Stationary (Non-Rotating) Black Holes: 2. Rotating Black Holes: Key Differences: Implications: Understanding the differences between rotating and stationary black holes is crucial…