Two moles of an ideal

  1. a container of 2.00 moles of an ideal gas as 1000 K undergoes a constant pressure and volume process in which the number of
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  2. You breathe in 12.0 L of pure oxygen at 298 K and 1,000 kPa to fill your lungs.How many moles of oxygen did you take in? Use the
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  3. P is the pressure in atmospheres (atm), V is the volume in liters (L), n is the number of moles, R is the gas constant (0.0821
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  4. Calculate the Volume occupied by 1.5 moles of an ideal gas at 25 degrees Celsius and a pressure of 0.80 atm. (R= 0.08206 L
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  5. 4. Use the pressure of the butane gas (your answer from question #3 above), along with the temperature and volume recorded in
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  6. Initially, there are 33 moles of A and 0 moles of B. How many moles of A and B will be present after the system reaches
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    2. Adam asked by Adam
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  7. Question PartPoints Submissions Used 1 –/1 0/2 Total –/1 A rigid tank contains 1.40 moles of an ideal gas. Determine the
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  8. Suppose that 4.7 moles of a monatomic ideal gas (atomic mass = 8.5 × 10^-27 kg) are heated from 300K to 500K at a constant
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  9. A compression at a constant pressure of 160 kPa is performed on 3 moles of an ideal monatomic gas. The compression reduces the
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  10. A rigid tank contains 1.20 moles of an ideal gas. Determine the number of moles of gas that must be withdrawn from the tank to
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    2. Stacy asked by Stacy
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