Hydrostatic and hydrodynamic kit with sensor, for interface
Function
Intended for study, physics laboratory, physics experiments on: Fluid mechanics. Hydrodynamics. The fundamental principle of hydrostatics, Stevin's principle, with a tube manometer. Measuring pressure in mmH2O. Measuring the difference in level in mm, in the test tank. Measuring pressure between two points at different levels in the test tank. The graph of pressure versus difference in level. Stevin's principle. The fundamental principle of hydrostatics, Stevin's principle, with a differential pressure sensor. Measuring the difference in level in mm, in the test tank. Measuring pressure between points at different levels. Transforming the measured pressure to the Pascal unit. The graph of pressure versus difference in level. Remembering Stevin's principle. The relationship between specific weight and specific mass. Expressing Stevin's principle through specific mass. Comparing the calculated values with the measured pressure values. Fluid velocity through an orifice. Using the smallest orifice. Calculating the time for a particle contained in the jet to fall. Calculation of the orifice launch velocity. Calculation of the flow rate. Using the largest orifice. Comparing the flow rates and velocities as a function of the orifice size. Fluid flow through three small, vertically positioned orifices. Volumetric flow in incompressible fluids, with differential pressure sensor. Calculation and analysis of the Reynolds number, etc. Note: The interface is not included.
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Key Experiments
- » The fundamental principle of hydrostatic Stevin principle with open-tube manometer - 1042.101A
- » The fundamental principle of hydrostatic Stevin principle with differential sensor - 1042.102A
- » Fluid velocity through a small orifice - 1042.103A
- » Fluid flow through three vertically positioned small holes - 1042.103B
- » Volumetric flow in incompressible fluids - 1042.104A
- » Calculation and analysis of the Reynolds number - 1042.105A