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The DRIFT Dark Matter Project - School of Physics and Astronomy
The DRIFT Dark Matter Project - School of Physics and Astronomy

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... electrostatic field are analogous to masses in a gravitational field. These charges have forces acting on them and hence possess potential energy. The ideas are widely used in many branches of electricity and in the theory of atom. 1.1 Electrostatics – frictional electricity In 600 B.C., Thales, a G ...
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... wide band-gap direct semiconductors and their nanostructures are usually well described by the single-band effective-mass theory and the 6-band Luttinger-Kohn model, respectively. The mentioned k · p models are well suited for low k states, whereas they cannot be straightforwardly adopted to model s ...
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...  use the conservation of energy law to solve problems involving and energy transformation (calculate the final velocity of a given object, given its initial velocity, mass, height, final height, and the amount of work done to it by external forces)  use the conservation of energy and momentum laws ...
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Time in physics



Time in physics is defined by its measurement: time is what a clock reads. In classical, non-relativistic physics it is a scalar quantity and, like length, mass, and charge, is usually described as a fundamental quantity. Time can be combined mathematically with other physical quantities to derive other concepts such as motion, kinetic energy and time-dependent fields. Timekeeping is a complex of technological and scientific issues, and part of the foundation of recordkeeping.
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