Absolute temperature is a thermodynamic temperature and is used as the standard temperature unit. Temperature comes from the kinetic energy of a matters particle and random motions. When motion stops, it is considered absolute zero.
Absolute pressure measurements include atmospheric pressure as a reference point, while gauge pressure measurements do not account for atmospheric pressure.
That depends how cool you make the molecules. Theoretically at Absolute zero (0k) molecules are supposed to cease to vibrate. I say theoretically, because absolute Zero is unobtainable and also it doesn't take into account movement at the Quantum scale.
The v wr physics concept, also known as the Lorentz factor, explains how particles behave at high velocities by taking into account the effects of time dilation and length contraction. As particles approach the speed of light, time slows down for them and their length contracts in the direction of motion. This concept helps to understand how particles interact and move at high speeds, leading to phenomena such as relativistic effects and the increase in mass as velocity approaches the speed of light.
Temperature is the degree of hotness. So, if you have say 1kg or iron and you put 100 calories of heat into it, and do them same to a 2kg lump of iron, the first one will become hotter than the second, although they will both contain the same amount of heat. This heat is part of the internal energy of the iron lumps.
The speed at which particles of sediment fall through a still fluid is influenced by factors such as the size and density of the particles, as well as the viscosity of the fluid. This settling velocity can be calculated using Stokes' law, which takes into account these factors to determine the terminal velocity of the particles.
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When temperature increases, it provides energy to the particles within a substance, causing them to move faster and break away from their fixed positions. This can lead to a change in state, such as solid to liquid or liquid to gas, as the intermolecular forces weaken and the particles gain enough energy to overcome them.
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Protons and neutrons
Protons and electrons are particles that account for the charge of the mass. Protons have a positive charge, while electrons have a negative charge. The net charge of an object is determined by the balance of these two particles.
Thomson's model does not account for the existence of positively charged particles within the atom. It also does not explain the stability of the atom or the arrangement of electrons within the atom. Additionally, it fails to describe the presence of different energy levels in the atom.
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Yes, absolute pressure is the pressure measured with respect to a vacuum, while static pressure is the pressure exerted by a fluid due to its motion or position. While they are related, they are not the same as static pressure does not take into account the atmospheric pressure.
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