Question

An ideal gas is isochorically heated, moving from point 1 to point 2 according to the figure below. P2 P1 0 If the change in internal energy Δυ=517.11, initial pressure Pi=7616.9Pa, final pressure P-10860·7Pa, and n=55.0mols, how much energy Q is added to the system in the form of heat? Answer in Joules

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
An ideal gas is isochorically heated, moving from point 1 to point 2 according to the...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • 1 mole, n=1, of an ideal monatomic gas undergoes the following process: It starts in the...

    1 mole, n=1, of an ideal monatomic gas undergoes the following process: It starts in the state(Po, Vo). It expands isobarically to the state(Po, 5Vo). It is heated at constant volume(isochorically) to (7Po, 5Vo) A.) Plot this on a PV diagram B.) What is the temperature difference between the initial and the final state? C.) What is the internal energy change? D.) What is the total heat flow into the gas? 1 mole , n l, of an idcal monatomic...

  • Learning Goal Internal Energy of an ideal gas The internal energy of a system is the...

    Learning Goal Internal Energy of an ideal gas The internal energy of a system is the energy stored in the system. In an ideal gas, the internal energy includes the kinetic energies (translational and rotational) of all the molecules, and other energies due to the interactions among the molecules. The internal energy is proportional to the Absolute Temperature T and the number of moles n (or the number of molecules N). n monatomic ideal gases, the interactions among the molecules...

  • Please help!! An ideal gas contracts adiabatically as it goes from state 2 to state 1...

    Please help!! An ideal gas contracts adiabatically as it goes from state 2 to state 1 as shown in the figure below. P1t- 2 0 0 Vl V2 If P2-510.7Pa, ½=5.1m3, п-28.6mols, T-125. 1K, and ratio of heat capacities γ=1.67, what is the change in internal energy of the gas as it goes from point 2 to point 1? Answer in Joules.

  • A flask holds 8.75 kg of a diaatomic ideal gas (mass number of the gas 82,8)....

    A flask holds 8.75 kg of a diaatomic ideal gas (mass number of the gas 82,8). If the gas changes temperature isochorically (constant volume) from temperature 348° C to 752° C, find the change in the internal energy of the gas, in kJ. A positive answer means the internal energy increased, a negative answer means the internal energy decreased. A flask holds 5.11 kg of a monatomic ideal gas (mass number 283). If the gas changes temperature isobarically (constant pressure)...

  • A monatomic ideal gas is taken through a closed cycle. Starting from state 1 with pressure...

    A monatomic ideal gas is taken through a closed cycle. Starting from state 1 with pressure P1 and volume V1 the gas expands isothermally (at constant temperature) to volume V2 = 2V1. It is then compressed at constant pressure back to the original volume V1 and then heated at constant volume to return to the original pressure P1 . a) Find how much work is performed by this gas during each part of this cycle. b) Find how much heat...

  • A cylinder with a piston contains 0.140 mol of nitrogen at 1.88 105 Pa and 325...

    A cylinder with a piston contains 0.140 mol of nitrogen at 1.88 105 Pa and 325 K. The nitrogen may be treated as an ideal gas. The gas is first compressed isobarically to half its original volume. It then expands adiabatically back to its original volume, and finally it is heated isochorically to its original pressure. PLEASE do B and C and don't don't forget to show all the steps specially for B becuase I don't know how to do...

  • 1" Law Word Problems 1) An ideal gas is enclosed in a piston, and 1600 J...

    1" Law Word Problems 1) An ideal gas is enclosed in a piston, and 1600 J of work is done on the gas. As this happens, the intemal energy of the gas increases by only 500 J. During this process, how much heat flows into or ou of the ideal gas? Enter a positive number to indicate a heat flow into the gas or a negative number to indicate a heat flow out of the gas. 2) A system gains...

  • We have a diatomic ideal gas with a y of 5/2. It starts with an initial...

    We have a diatomic ideal gas with a y of 5/2. It starts with an initial pressure of 1kPa, an initial temperature of 100 K, and an initial volume of 10 m^3 a) The gas undergoes an adiabatic compression, halving its volume. What is its new pressure? b) What was the work done? c) What was the heat flow? d) Now, keeping pressure constant, heat is put into the gas, doubling the volume. How much heat is added? e) What...

  • An ideal gas contracts isothermally along a path from point 1 to point 2 as shown...

    An ideal gas contracts isothermally along a path from point 1 to point 2 as shown in the figure below 2 P1 0 V2 Vi If V1-10.2m2, V2-8.2m, T-241.9K, and n-47.8mols what is the final pressure p2? Answer in Pascals (Newtons per square meter)

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT