Notice: This page requires JavaScript to function properly.
Please enable JavaScript in your browser settings or update your browser.
Apprendre Challenge: Gas Expansion Work Calculation | Thermodynamics and Data Analysis
Practice
Projects
Quizzes & Challenges
Quizzes
Challenges
/
Python for Mechanical Engineers

bookChallenge: Gas Expansion Work Calculation

Calculating work during gas expansion is a common thermodynamics problem. Automating this with Python streamlines engineering analysis. When an ideal gas expands isothermally, the work done can be determined using the formula:

W = nRT * ln(Vf/Vi)

where W is the work done, n is the amount of gas in moles, R is the universal gas constant, T is the absolute temperature, Vi is the initial volume, Vf is the final volume, and ln is the natural logarithm. By creating a Python function to perform this calculation, you can quickly analyze different scenarios and support engineering decision-making.

Tâche

Swipe to start coding

Implement a function that computes the work done by an ideal gas during isothermal expansion, given initial and final volumes, amount of gas, and temperature.

  • Use the universal gas constant value of 8.314 J/(mol*K).
  • Calculate the ratio of final volume to initial volume.
  • Compute the natural logarithm of the volume ratio.
  • Multiply the result by the amount of gas, the gas constant, and the temperature.
  • Return the calculated work.

Solution

Tout était clair ?

Comment pouvons-nous l'améliorer ?

Merci pour vos commentaires !

Section 3. Chapitre 3
single

single

Demandez à l'IA

expand

Demandez à l'IA

ChatGPT

Posez n'importe quelle question ou essayez l'une des questions suggérées pour commencer notre discussion

Suggested prompts:

Can you show me how to write the Python function for this calculation?

What values should I use for the gas constant R and temperature T?

Can you explain what is meant by isothermal expansion?

close

bookChallenge: Gas Expansion Work Calculation

Glissez pour afficher le menu

Calculating work during gas expansion is a common thermodynamics problem. Automating this with Python streamlines engineering analysis. When an ideal gas expands isothermally, the work done can be determined using the formula:

W = nRT * ln(Vf/Vi)

where W is the work done, n is the amount of gas in moles, R is the universal gas constant, T is the absolute temperature, Vi is the initial volume, Vf is the final volume, and ln is the natural logarithm. By creating a Python function to perform this calculation, you can quickly analyze different scenarios and support engineering decision-making.

Tâche

Swipe to start coding

Implement a function that computes the work done by an ideal gas during isothermal expansion, given initial and final volumes, amount of gas, and temperature.

  • Use the universal gas constant value of 8.314 J/(mol*K).
  • Calculate the ratio of final volume to initial volume.
  • Compute the natural logarithm of the volume ratio.
  • Multiply the result by the amount of gas, the gas constant, and the temperature.
  • Return the calculated work.

Solution

Switch to desktopPassez à un bureau pour une pratique réelleContinuez d'où vous êtes en utilisant l'une des options ci-dessous
Tout était clair ?

Comment pouvons-nous l'améliorer ?

Merci pour vos commentaires !

Section 3. Chapitre 3
single

single

some-alt