Calculate each of the following quantities for an ideal gas?
Let’s learn calculate each of the following quantities for an ideal gas. The most accurate or helpful solution is served by Yahoo! Answers.
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Answer:
(a) To get the number of moles, divide by Avogadro's number, 6.022×10^23 mol-1. Multiply the molar...
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a) the volume of the gas in liters if 1.57 moles has a pressure of 0.86 atm at a temperature of -12 degrees celsius. b) the absolute temperature of the gas at white 6.79 X 10^-2 mol occupies 164 mL at 693 torr. c) the pressure, atm, if 8.25 X 10^-2 mol...
Answer:
The properties of Gases are related by - PV = nRT P = pressure V = volume T= Temp. (deg. K) n = Moles...
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R = 0.25kj/kg K Cv = 1.75 kj/kg K Determine Cp? Calculate delta U and delta H for an isothermal compression process that requires 200kj work? Stuck, hopefully you have your property tables book, but need help on this. Thanks
Answer:
Cp = Cv + R Cp = 1.75 + 0.25 Cp = 2 kj/kg K The process is isothermal, so delta T = 0 delta U = m Cv...
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Which of the following quantities is NOT required to calculate the amount of heat energy required to heat water from 25 degrees C to 55 degrees C? a) the final temperature b) the specific heat of water c) the mass of the water sample d) the initial temperature...
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]Which of the following best describes the changes involved in a fusion reaction? The nucleus of an atom splits into fragments, releasing a large amount of energy. The nucleus of an atom splits into fragments, absorbing a large amount of energy. The...
Answer:
wow 13 questions at once, in violation of Yahoo rules - I'll take 4 at a time Which of the following...
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a) The pressure decreased from 4 atm to 1520 mm Hg, while the temperature is decreased from 250°C to 212°F. b) The pressure is increased from 450 torr to 2280 mm Hg, while the temperature is increased from 212°F to 150°C.
Answer:
Are you searching for the volume of gas present in each of these situations? PV=nRT will be your most...
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1) final temp of the gas given: Cv = 12.5 jK−1 mol−1
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For gases at STP, one mole occupies a volume of 22.4 L. What volume will the following quantities of gas occupy at STP? 1. 13.9 moles of CO2 2. 1.45moles of O2 ...show more
Answer:
ideal gas law, PV=nRT pressure (atm) x volume (liters) = moles x Faraday's constant x Temp (Kelvin)...
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A: 8.2mol C2H6 B: 0.230mol CO C: 0.480mol CO2 D: 24.1mol N2O How do you calculate these I am lost on the proper method?
Answer:
1 mole of any ideal gas occupies 22.4L So if you have 1/2 a mole, you have 22.4 L * 0.5 And so on
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