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Schrodinger theorized that the behavior of electrons within atoms could be explained by treating them mathematically as matter waves. Schrodinger used the wave particle duality of the electron to develop and solve a complex mathematical equation that accurately described the behavior of the electron in a hydrogen atom. In Schrodinger's model electrons do not follow sharply defined orbits but rather are found in orbitals.

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Schrodinger proposed a theory suggesting that the behavior of electrons within atoms could be elucidated by representing them mathematically as matter waves. He harnessed the concept of wave-particle duality in electrons to formulate and successfully solve a intricate mathematical equation that precisely depicted the electron's behavior within a hydrogen atom. In Schrodinger's model, electrons do not adhere to well-defined orbits; instead, they are located within orbitals.

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Step-by-step explanation:

According to Schrodinger's theory, electrons in atoms can be analytically treated like matter waves to explain their behavior. Schrodinger created and solved a challenging mathematical equation that precisely reflected the activity of the electron in a hydrogen atom by utilizing the wave particle duality of the electron. Electrons in Schrodinger's model are located in orbitals rather than clearly defined orbits.

User Lazar Nikolic
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