*Second, the magnitude of the tension on cart 1 and cart 2 has the same value (since it's the same string).This means I can draw the following two force diagrams for the two masses.*

*Second, the magnitude of the tension on cart 1 and cart 2 has the same value (since it's the same string).*

Both masses have force sensors on them so that I can measure the tension in the string.

Also, I can measure the position, velocity and acceleration of the cart using the Vernier motion encoding system.

Find ways to creatively approach your problems by working with other people and approaching the problem from a different perspective.

The string that attaches the two carts does two things.

If I just solved the problem the correct way, it wouldn't be that much fun.

Instead, I am going to set up an experiment to show that the tension in the string isn't just the weight of mass 2.

You can see the setup in the image above (it's called a half Atwood machine in case you want to google the solution).

Basically, I have a mass on a low friction track with a string connected over a pulley to a hanging mass.

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This article was co-authored by Paul Chernyak, LPC.

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