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Home » Physics Homework Help » Molecular Physics
Molecular Physics
We all have studied a lot about molecules, the most important organ for the origin of life. We all are always eager to know about more and more about molecules, their physical and chemical properties. To fulfill all these requirements one has to take support and study the very ambiguous aspect of physics, known as Molecular Physics, which covers all experimental and theoretical aspects of molecular science, like electronic structure, molecular dynamics, spectroscopy and reactions of kinetics to condensed matter, surface science, and statistical mechanics of simple and complex fluids. Contributions include full papers, preliminary communications, research notes and invited topical review articles. Molecular physics is the study of the physical properties of molecules and of the chemical bonds between atoms. Important experimental techniques of Molecular Physics are the various types of spectroscopy. This branch of Physics is very closely related to Atomic Physics and overlaps greatly with chemical physics, theoretical chemistry and physical chemistry. Moreover, Molecular Physics is the study of the behavior and structure of molecules, including the quantum-mechanical explanation of several kinds of chemical binding between atoms in a molecule, directed valence, the polarizability of molecules, the quantization of vibrational, rotational, and electronic motions of molecules, and the phenomena arising from intermolecular forces. It is the study about physical properties of molecules and the chemical bonds between atoms.

In the field of research in the United Kingdom, encompassing theoretical and experimental activity in many areas such as molecular reaction dynamics, laser chemistry/physics, spectroscopy, quantum chemistry, surfaces, and solid state physics, Molecular Physics has a flourishing interdisciplinary. Additionally to the electronic excitation states which are known from atoms, molecules are able to rotate and to vibrate. These rotations and vibrations are quantized, there are discrete energy levels. The smallest energy differences exist between different rotational states, therefore pure rotational spectra are in the far infrared region (about 30 - 150 µm wavelength) of the electromagnetic spectrum. Vibrational spectra are in the near infrared (about 1 - 5 µm) and spectra resulting from electronic transitions are mostly in the visible and ultraviolet regions. From measuring rotational and vibrational spectra properties of molecules like the distance between the nuclei can be calculated. One important aspect of molecular physics is that the essential atomic orbital theory in the field of atomic physics expands to the molecular orbital theory. Molecular physicists work at the interface of physics and chemistry and there is a need to promote and support the chemical physics community.

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