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It is used to find probability distributions (expectation values) of properties of subatomic particles.
You should substitute your solution in the equation. If the solution is correct you will receive equality. Otherwise your solution is wrong.
The Schrodinger equation is from January 1926.
You need to clarify the question.
When Schrodinger applied his mathematical formulae to the permitted states of an electron in a hydrogen atom, he found they perfectly matched the Bohr Model, which had perfectly predicted hydrogen spectral lines. For Schrondinger, that was good enough for him to publish his work. Max Born later showed that the Schrodinger Equation could be used to accurately predict particle scattering from a nucleus. However, Born showed that this would only work if one assumes that the cross-product of Schrodinger's Wave Function represents the probability of a point charge being in a specific place; something that Schrodinger never accepted.
The time-independent Schr
The time dependent equation is more general. The time independent equation only applies to standing waves.
It is used to find probability distributions (expectation values) of properties of subatomic particles.
You should substitute your solution in the equation. If the solution is correct you will receive equality. Otherwise your solution is wrong.
This is the Schrodinger equation from 1925-1926.
The Schrodinger equation is from January 1926.
You need to clarify the question.
Erwin Schrödinger was a physicist and a father of quantum mechanics. Quantum mechanics deals a lot with probability. His famous Schrödinger equation, which deals with how the quantum state of a physical system changes in time, uses probability in how it deals with the local conservation of probability density. For more information, please see the Related Link below.
Erwin Schrodinger
Schrodinger is the author of the well known equation; this equation can describe an atom. That there was a great deal of uncertainty as to where things were and that waves were as important as particles.
Schrodinger wave equation
The current picture of the hydrogen atom is based on the atomic orbitals of wave mechanics which Erwin Schrodinger developed in 1926. This model is based on the Schrodinger Equation.