Why Max work is equal to electric work?

In summary, the Gibbs free energy takes into account the total work available or necessary for a process at constant temperature and pressure, excluding any mechanical work. The Helmholtz free energy, on the other hand, includes mechanical work in its calculation. This is why only electric work is considered as the maximum work in the Gibbs free energy equation, as it does not take into account any mechanical work.
  • #1
mooncrater
217
18

Homework Statement


It was given in my book that:[/B]
Systems are capable of doing pressure-volume (mechanical work) as well as non-mechanical work(like electric work).
So,(ΔG)P,T=ΔH-TΔS=ΔU+PΔV-TΔS
And
ΔU=qrev-wmech-welec
=qrev-PΔV-welec
(ΔG)P,T=qrev-PΔV-welec+PΔV-TΔS
=-welec
Now in the book its given that:
(ΔG)P,T=-wmax
But wmax should comprise of both the mechanical and electric work . Why only electric work is taken as the wmax?

Homework Equations


None

The Attempt at a Solution


-
 
Physics news on Phys.org
  • #2
That's what the Gibbs free energy gives you: the total work available or necessary for the process, considering that the system is at constant T and P. That means that any mechanical work is not taken into account, and is useful when that work is wasted or when you need to include the work done "for free" by the environment.

If you want to take into account mechanical work, you have to use the Helmholtz free energy.
 
  • #3
Okay...that means Gibbs free energy doesn't include mechanical work(by definition) whereas helmholtz free energy does. Am I correct here?
 
  • #4
$$
\begin{align}
dG &= dU -T dS - P dV \\
dA &= dU - T dS
\end{align}
$$
So you see that mechanical work is explicitly removed from the chnage internal energy when calculating the Gibbs free energy, but not the Helmholtz free energy.
 
  • Like
Likes mooncrater

Related to Why Max work is equal to electric work?

1. What is "Max work" and how is it related to electric work?

"Max work" refers to the maximum amount of work that can be done by an electric field on a charged particle. It is related to electric work because the electric field is responsible for the movement of the charged particle, which results in work being done.

2. Why is Max work equal to electric work?

This is due to the fundamental law of conservation of energy. The electric field converts electrical potential energy into kinetic energy, which is the work done on the charged particle. Since energy cannot be created or destroyed, the amount of work done by the electric field must be equal to the work done on the particle.

3. How is the magnitude of Max work determined?

The magnitude of Max work is determined by the electric field strength and the distance the charged particle travels. The stronger the electric field and the longer the distance, the greater the Max work will be.

4. Is Max work always equal to electric work?

In ideal situations, where there is no loss of energy due to factors such as resistance or friction, Max work will always be equal to electric work. However, in real-world scenarios, there may be some energy loss, resulting in a slight difference between the two.

5. How does understanding the concept of Max work help in practical applications?

Understanding Max work is essential in many practical applications, such as designing electrical circuits and motors. By knowing the maximum amount of work that can be done by an electric field, engineers and scientists can optimize their designs to achieve the desired results.

Similar threads

  • Biology and Chemistry Homework Help
Replies
2
Views
1K
  • Biology and Chemistry Homework Help
Replies
2
Views
1K
  • Biology and Chemistry Homework Help
Replies
3
Views
5K
  • Introductory Physics Homework Help
Replies
2
Views
1K
  • Introductory Physics Homework Help
Replies
4
Views
2K
  • Biology and Chemistry Homework Help
Replies
4
Views
2K
  • Introductory Physics Homework Help
Replies
2
Views
1K
  • Biology and Chemistry Homework Help
Replies
2
Views
2K
  • Introductory Physics Homework Help
Replies
7
Views
3K
  • Introductory Physics Homework Help
Replies
11
Views
3K
Back
Top