The water in a large lake is to be used to generate electricity by the installation of a hydraulic turbinegenerator at a location where the depth of the water is 50 m. Water is to be supplied at a rate of 5000 kg/s. If the electric power generated is measured to be 1862 kW and the generator efficiency is 95 percent, determine ( a ) the overall efficiency of the turbine—generator, ( b ) the mechanical efficiency of the turbine, and ( c ) the shaft power supplied by the turbine to the generator.
The water in a large lake is to be used to generate electricity by the installation of a hydraulic turbinegenerator at a location where the depth of the water is 50 m. Water is to be supplied at a rate of 5000 kg/s. If the electric power generated is measured to be 1862 kW and the generator efficiency is 95 percent, determine ( a ) the overall efficiency of the turbine—generator, ( b ) the mechanical efficiency of the turbine, and ( c ) the shaft power supplied by the turbine to the generator.
Solution Summary: The author analyzes the overall efficiency of the turbine-generator.
The water in a large lake is to be used to generate electricity by the installation of a hydraulic turbinegenerator at a location where the depth of the water is 50 m. Water is to be supplied at a rate of 5000 kg/s. If the electric power generated is measured to be 1862 kW and the generator efficiency is 95 percent, determine (a) the overall efficiency of the turbine—generator, (b) the mechanical efficiency of the turbine, and (c) the shaft power supplied by the turbine to the generator.
Branch of science that deals with the stationary and moving bodies under the influence of forces.
A six cylinder petrol engine has a compression ratio of 5:1. The clearance volume of each cylinder is 110CC. It operates on the four-stroke constant volume cycle and the indicated efficiency ratio referred to air standard efficiency is 0.56. At the speed of 2400 rpm. 44000KJ/kg. Determine the consumes 10kg of fuel per hour. The calorific value of fuel average indicated mean effective pressure.
The members of a truss are connected to the gusset plate as shown in (Figure 1). The forces
are concurrent at point O. Take = 90° and T₁ = 7.5 kN.
Part A
Determine the magnitude of F for equilibrium.
Express your answer to three significant figures and include the appropriate units.
F= 7.03
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?
kN
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▾ Part B
Determine the magnitude of T2 for equilibrium.
Express your answer to three significant figures and include the appropriate units.
Figure
T₂ = 7.03
C
T2
|?
KN
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Consider the following acid-base reaction:
Fe3+(aq) +3H2O -Fe(OH)3 (s) + 3H*
←
A. Using thermodynamics, calculate the equilibrium constant K at 25°C (The AG° of formation of
Fe(OH)3(s) is -699 kJ/mol).
B. Using the value of K you calculated in part a, if a solution contains 10-4 M Fe3+ and has a pH of 7.5,
will Fe(OH)3(s) precipitate? Show all calculations necessary to justify your answer. Note that the
reaction as written is for precipitation, not dissolution like Ksp-
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