The Quantum model
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.
The quantum mechanical model is the name of the atomic model in which electrons are treated as waves.
Schrodinger treats electrons as waves.
The concept of atomic orbitals was developed by Erwin Schrödinger in 1926 as part of the wave-mechanical model of the atom. Schrödinger's equation described the behavior of electrons in atoms as standing waves around the nucleus.
The modern model for atoms holds electrons in waves, or clouds, surrounding the nucleus. Bohr's model had these electrons orbiting the nucleus as particles. Who wanna date im SINGLE
Erwin Schrodinger proposed the modern atomic model, known as the "wave-mechanical" model. Essentially, he said that atoms behave like both waves and particles, and purported the concept of electron shells, subshells, and orbitals. Electrons are found on "shells" of charge outside the atom. These shells divide into subshells, which divide into orbitals.
In Bohr's model, electrons travel in a direct, determined path around the nucleus. In the modern model of the atom, electrons behave more like waves on a vibrating string. Basically the electron's path cannot be predetermined.
Atoms and molecules are in constant motion due to thermal energy, vibrating and rotating. Waves propagate through a medium or space by transferring energy without displacing matter. Electrons move around atomic nuclei in specific energy levels or orbitals.
Schroedinger
broadband blackbody radiation generated by heatnarrow band spectral radiation from excited electrons falling to lower energy atomic orbitals
The Schrödinger model of the atom treats electrons as wave-like particles rather than as point-like particles in fixed orbits. It describes the behavior of electrons in terms of their probability distribution around the nucleus, known as electron clouds. The model allows for a more accurate description of electron behavior and allows us to predict the energy levels and properties of atoms.
Electrons don't travel along a set "path". . .they're actually not really entirely particles. Electrons have properties of both particles and waves, so they tend to aggregate in certain specific areas around a nucleus called orbitals and sort of. . .vibrate around in those areas. But they don't travel in a set path, b/c they're not particles.