Fluid mechanics set, basic
Function
Intended for experimental study, physics laboratory and carrying out physics experiments on: Hydrostatics. The differentiation between force and pressure. The force exerted by a liquid on the walls of the vessel that contains it. The free surfaces of a liquid within communicating vessels. The pressure at a point in a liquid in equilibrium, Stevin's principle. Measuring pressure with an open-tube manometer. Stevin's principle, the fundamental principle of hydrostatics. Pascal's principle. Baise Pascal and the principle that bears his name. Calculation of manometric pressure. Measuring pressure in mmH2O indicated by the open-tube manometer. Converting the units of pressure mmH2O to Pa and N/m2. An important application of Pascal's principle, the hydraulic press. The force called buoyancy. The vertical buoyancy force that acts on bodies submerged in fluids. Archimedes' principle. What is understood by fluid. The weight of the volume of displaced water. The determination of the density of a liquid from the buoyancy in a mixture of water and salt. The specific gravity of a liquid from another with a known specific gravity. Study of gases and their transformations. Isothermal transformation, Boyle-Mariotte's law. How to determine the initial volume of confined gas. How to determine local atmospheric pressure. P versus V table and graph and P versus 1/V graph.
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Key Experiments
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- » The force exerted by a liquid on the walls of the vessel that contains it - 1042.002
- » The leveling of liquid surfaces in open communicating vessels - 1042.004
- » The pressure at a point of a liquid in equilibrium - Stevin´s principle - 1042.008B
- » Pascal´s law, using water - 1042.024_2
- » The buoyancy, experimental verification - 1042.028
- » Archimedes´ principle - 1042.032
- » The specific weight of a liquid from another with a known specific weight - 1042.020
- » Study of gases - Isothermal transformation, Boyle-Mariotte´s Law - 1052.032Q2