Question

In the graph below, each unit on the horizontal axis is 1.20 × 10-3 m3 and each unit on the vertical axis is 40.0 kPa. The lower left corner of the graph is 0 kPa and 0 m3 (a) Determine the change in thermal energy of the gas if 2362 J of heat is added as it expands in volume along the direct (diagonal) path from state C to state A (b) If the temperature of the gas is 533 K when it is in the state marked C on the pV diagram, how many moles of gas does the sample have? moles
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Concept:- here we use first law of thermodynamics and ideal gas equation for solution, 1056 J ON

***************************************************************************************************
Check the answer and let me know immediately if you find something wrong... I will rectify the mistakes asap if any

Add a comment
Know the answer?
Add Answer to:
In the graph below, each unit on the horizontal axis is 1.20 × 10-3 m3 and...
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
  • In the graph below, each unit on the horizontal axis is 1.50 X 10-3 m3 and...

    In the graph below, each unit on the horizontal axis is 1.50 X 10-3 m3 and each unit on the vertical axis is 0.3 atm. TUTTI (a) Determine the change in internal energy of the gas if 2302 ) of heat is added as it expands in volume along the direct path CA. (b) To get the same change in internal energy, how much heat must be added to the gas as it goes along the path CBA?

  • In the figure, 1.73 mole of an ideal diatomic gas can go from a to c...

    In the figure, 1.73 mole of an ideal diatomic gas can go from a to c along either the direct (diagonal) path ac or the indirect path abc. The scale of the vertical axis is set by pab = 6.47 kPa and pc = 3.00 kPa, and the scale of the horizontal axis is set by Vbc = 6.73 m3 and Va = 2.08 m3. (The molecules rotate but do not oscillate.) During the transition along path ac, (a) what...

  • In the figure, 1.51 mole of an ideal diatomic gas can go from a to c...

    In the figure, 1.51 mole of an ideal diatomic gas can go from a to c along either the direct (diagonal) path ac or the indirect path abc. The scale of the vertical axis is set by Pab = 5.78 kPa and pc-2.38 kPa, and the scale of the horizontal axis is set by Voc-6.54 m3 and v, = 2.89 m3. (The molecules rotate but do not oscillate.) During the transition along path ac, (a) what is the change in...

  • One mole of an ideal diatomic gas goes from a to c along the diagonal path...

    One mole of an ideal diatomic gas goes from a to c along the diagonal path in the figure below. The scale of the vertical axis is set by Pab = 4.8 kPa and pc = 2.2 kPa, and the scale of the horizontal axis is set by Vbc-4.4 m3 and Va 2.2 m 3 bc Volume (m) (a) During the transition, what is the change in internal energy of the gas? (b) How much energy is added to the...

  • In the diagram below each unit on the horizontal axis is 6.00 cm and each unit...

    In the diagram below each unit on the horizontal axis is 6.00 cm and each unit on the vertical axis is 6.00 cm. The equipotential lines in a region of uniform electric field are indicated by the blue lines. (Note that the diagram is not drawn to scale.) (a) What is the direction of the electric field? THE IMAGE IS NOT MISSING IT IS THE IMGUR LINK BELOW: https://i.imgur.com/xHQinGw.png Figure will not post any other way, its says link is...

  • 1. A particle is moving along a (horizontal) x-axis. Its position as a function of time...

    1. A particle is moving along a (horizontal) x-axis. Its position as a function of time is given by the equationAt2 B where A-2.10 and B-2.80 and t is in seconds. (i) What are the proper units for A and B in SI units (show your work) (ii) Determine the displacement of the particle during the time interval from -3.00 s to 12 5.00 s. iii) Determine the average velocity (think secant line!) during this time interval (iv) Determine the...

  • 2/3 points | Previous Answers OSColPhysAP2016 19.2.WA.018 In the diagram below, each division on the horizontal...

    2/3 points | Previous Answers OSColPhysAP2016 19.2.WA.018 In the diagram below, each division on the horizontal axis is 0 20 m while each dvs n on the vertical ax is whats he le old -ch of he e ions per ieⓓ belie Electric potential (V) 4.5 V 3.0 V 1.5 V 0.20 m .40m 0.60 m Displacement (s) (a) from 0.0 m to 0.10 m V/m b) from 0.10 m to 0.70 m 6.25 Does the graph in this region...

  • some context Problem 3: Use simple kinetic theory of gases discussed in section 1.3.2 as well...

    some context Problem 3: Use simple kinetic theory of gases discussed in section 1.3.2 as well as Fourer's law of condustion to prove: 2 R373 D11 = 3113/202pm Dal We were unable to transcribe this imageof a nes. the xed the led negligible The following assumptions about the structure of the cases are made in order to investigate the statistical rules of the random motion of the molecules: The size of the gas molecules is negligible compared with the distance...

  • I need Summary of this Paper i dont need long summary i need What methodology they used , what is the purpose of this p...

    I need Summary of this Paper i dont need long summary i need What methodology they used , what is the purpose of this paper and some conclusions and contributes of this paper. I need this for my Finishing Project so i need this ASAP please ( IN 1-2-3 HOURS PLEASE !!!) Budgetary Policy and Economic Growth Errol D'Souza The share of capital expenditures in government expenditures has been slipping and the tax reforms have not yet improved the income...

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