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Scene 1 (0s)

Find the work possess for a helium gas at 20°C?. 1.

Scene 2 (7s)

Two kilogram of gas is confined in a 1m 3 tank at 200 kpa and 88°C. What type of gas is in the tank?.

Scene 3 (15s)

Find the enthalpy of Helium if its internal energy is 200 KJ/kg..

Scene 4 (22s)

Compute the mass of a 2m 3 propane at 280 kpa and 40°C..

Scene 5 (30s)

Compute the air flow in ft 3 /min of mechanical ventilation required to exhaust an accumulation of refrigerant due to leaks of the system capable of revolving air from the machinery for a mass of 49 lbs refrigerant..

Scene 6 (37s)

Compute the free aperture cross section in m 3 for the ventilation of a machinery room if the mass of refrigerant is 9kg..

Scene 7 (45s)

A 29.53 x 39.37 pressure vessel contains ammonia with f=0.041. Compute the minimum required discharge capacity of the relief device in kg/hr..

Scene 8 (52s)

Compute the maximum length of the discharge pipe installed on an outlet of a pressure relief devise in feel for internal pipe diameter of 0.5 inch and rated discharge capacity is 8 lb /min of air. The rated pressure of relief valve is 10 psig..

Scene 9 (1m 0s)

A thermal power plant has the heat rate of 11,363 Btu/ kw-hr . Find the thermal efficiency of the plant..

Scene 10 (1m 7s)

What is the hydraulic gradient of 1 mile, 17 inches inside diameter pipe when 3300 gal/min of water flow with f=0.03..

Scene 11 (1m 15s)

Find the loss of head in the pipe entrance if speed of flow is 10 m/s..

Scene 12 (1m 22s)

Wet material containing 220% moisture (dry basis) is to be dried at the rate of 1.5 kg/s in a continuous dryer to give a produce containing 10% (dry basis). Find the moisture removed, kg/hr..

Scene 13 (1m 30s)

Copra enters a dryer containing 70% moisture and leaves 7% moisture. Find the moisture removed on each pound of solid in final product..

Scene 14 (1m 37s)

A 1m x 1.5m cylindrical tank is full of oil with SG=0.92. Find the force acting at the bottom of the tank in dynes..

Scene 15 (1m 45s)

Find the pressure at the 100 fathom depth of water in kpag ..

Scene 16 (1m 52s)

Find the depth in furlong of the ocean (SG=1.03) if the pressure at the sea bed is 2,032.56 kpag ..

Scene 17 (2m 0s)

Find the mass of 10 quartz of water.. 17. A. 10.46 kg.

Scene 18 (2m 7s)

Find the mass of Carbon Dioxide having a pressure of 20 psia at 200° F with 10ft 3 volume.

Scene 19 (2m 15s)

Find the heat needed to raise the temperature of water from 30°C to 100°C with 60% quality. Consider an atmospheric pressure of 101.325 kpa . Use the approximate enthalpy formula of liquid..

Scene 20 (2m 22s)

Find the enthalpy of water at 212°F and 14.7 psi if the dryness factor is 30%. Use the approximate enthalpy formula of liquid..

Scene 21 (2m 30s)

An air compressor consumed 1200 kw-hr per day of energy. The electric motor driving the compressor has an efficiency of 80%. If indicated power of compressor is 34 kw, find the mechanical efficiency of the compressor..

Scene 22 (2m 37s)

A refrigeration system consumed 28,800 kw-hr per month of energy. There are 20% of energy is lost due to cooling system of compressor and motor efficiency is 90%. If COP of the system is 6, find the mechanical efficiency of the compressor..

Scene 23 (2m 45s)

A 23 tons refrigeration system has a heat rejected of 100kw. Find the energy efficiency ratio of the system..

Scene 24 (2m 52s)

A 200mm x 250 mm, 8-cylinder, 4-stroke diesel engine has a brake power of 150 kw. The mechanical efficiency is 80%. If two of the cylinders were accidentally cut off, what will be the new friction power?.

Scene 25 (3m 0s)

If the energy efficiency ratio of the refrigeration system is 12.6, what is the COP of the system?.

Scene 26 (3m 8s)

An air compressor has a power of 40kw at 4% clearance. If the clearance will increase to 7%, what is the new power?.

Scene 27 (3m 15s)

What is the approximate value of temperature of water having enthalpy of 208 Btu/ lb ?.

Scene 28 (3m 23s)

Convert 750°R to °K.. 28. A. 390.33°K. B. 395.33°Kc.

Scene 29 (3m 30s)

An Otto cycle has a compression cycle of 8. Find the pressure during compression..

Scene 30 (3m 38s)

A diesel cycle has a cut off ratio of 2.5 and expansion ratio if 4. Find the clearance of the cycle..

Scene 31 (3m 45s)

A dual cycle has an initial temperature of 30°C. The compression ratio is 6 and the heat addition at constant volume process is 600 KJ/kg. If cut-off ratio is 2.5, find the maximum temperature of the cycle..

Scene 32 (3m 53s)

A three stages air compressor compresses air from 100 kpa to 1000 kpa . Find the intercooler pressure between 1 st and 2 nd stage..

Scene 33 (4m 0s)

A 10-stages air compressor compresses air from 100 kpa to 800 kpa . Find the intercooler pressure between the 1 st and 2 nd stage.

Scene 34 (4m 8s)

A 3-stages air compressor compresses air from 100 kpa to 700 kpa . Find the intercooler pressure between the 2 nd and 3 rd stage..

Scene 35 (4m 15s)

Carnot cycle A, B and C are connected in series so that the heat rejected from A will be the heat added to B, and heat rejected from B will be added to C, each cycle operated between 30°C and 400°C. If heat added to A is 1000 kw, find the work output of C..

Scene 36 (4m 23s)

Air compressed adiabatically from 30°C to 100°C. If mass of air being compressed 5 kg, find the change of entropy..

Scene 37 (4m 30s)

Two kilogram of air in a rigid tank changes its temperature from 32°C to 150°C. Find the work done during the process..

Scene 38 (4m 38s)

Determine the atmospheric pressure at a location where barometric reading is 740 mm Hg and gravitational acceleration is g=9.7m/s 2 . Assume the temperature of mercury to be 10°C, at which the density is 13,570 kg/m 3 ..

Scene 39 (4m 45s)

The barometer of a mountain hiker reads 930 mbars at the beginning if a hiking trip and 780 mbars at the end. Neglecting the effect of altitude, on local gravitational acceleration, determine the vertical distance climbed. Assume g=9.7 m/s 2 ..

Scene 40 (4m 53s)

The lower half of a 10 m high cylindrical container is filled with water and the upper half with oil that has SG=0.85. Determine the pressure difference between the top and bottom if the cylinder..

Scene 41 (5m 0s)

An ideal gas at 0.80 atmospheres and 87°C occupies 0.450 liter . How many moles are in the sample? (R=0.0821 liter-atm /mole-K).

Scene 42 (5m 8s)

A certain gas at 101.325 Kpa and 10°C whose volume is 2.83 m 3 capacity. Before admission, the storage vessel contained gas at a pressure and temperature of 137.8 Kpa and 26° C; after admission, the pressure increased to 1171.8 Kpa . What should be the final temperature of the gas in the vessel in Kelvin?.

Scene 43 (5m 15s)

A perfect gas has a value of R=58.8 ft-lb/ lb -°R and k=1.26. If 20 Btu are added to 10 lbs of this gas at constant volume when initial temperature is 90°F, find the final temperature..

Scene 44 (5m 23s)

Ammonia weighing 22 kgs is confirmed inside a cylinder equipped with a piston has an initial pressure of 413 Kpa at 38°C. If 3200 KJ of heat is added to the ammonia until its final pressure and temperature are 413 Kpa and 100°C, respectively, what is the amount of work done by the fluid in KJ?.

Scene 45 (5m 30s)

A tank contains 90ft 3 of air at a pressure of 350 psig; if the air is cooled until its pressure and temperature decreases at 200 psig and 70°F respectively, what is the decrease in internal energy?.

Scene 46 (5m 38s)

A large mining company was provided with a 3m 3 of compressed air tank. Air pressure in the tank drops from 700kpa to 150kpa while the temperature remains constant at 28°C. What percentage has the mass of air in the tank been reduced?.

Scene 47 (5m 45s)

A 4m 3 / hr pump delivers water to a pressure tank. At the start , the gage read 138Kpa until it reads 276Kpa and then the pump was shut off. The volume of the tank is 180liters. At 276Kpa, the water occupied 2/3 of the tank volume. Determine the volume of the water that can be taken out until the gage reads 138Kpa..

Scene 48 (5m 53s)

A refrigeration plant is rated at 15tons capacity. How many pounds of air per hour will it cool from 70 to 90°F at constant temperature?.

Scene 49 (6m 0s)

An air standard engine has a compression ratio of 18 and a cut-off ratio of 4. If the intake air pressure and temperature are 100kPa and 27 o C , find the work in KJ per kg..

Scene 50 (6m 8s)

Determine the air-standard efficiency of an engine operating on the diesel cycle with clearance of 6% when the suction pressure is 99.7 kPa and the fuel is injected for 7% of the stroke. Assume K= 1.4.