Centripetal force discussion question (Washing machine).

In summary: But now I feel a little better!In summary, the spin cycle of a washing machine removes water from clothes. The drum of radius, r, rotating with speed, v, will have a centripetal acceleration a = V^2/r which is provided by a centripetal force, acting toward the centre of the drum, which in turn has an equal and opposite reaction (centrifugal?) force. The inertia of the clothes and the water particles causes them to keep moving in a straight line, that with the combination of the reaction force, causes them to move around the edge of the drum and the water particles move out through the holes in the drum, which then fly off at a tangent to the drum's
  • #1
goodfellow
7
0
Note: This discussion question is from my University Textbook, as it so happens you can only get the solutions to half of the odd numbered exercise questions...

Disclaimer: I have been trying to wrap my head around this answer for a good 5 hours now, so it's not like I'm coming here to be spoon fed.

Anyway, the question:

"What is the purpose of the spin cycle of a washing machine? Explain in terms of acceleration components"

My answer:

The purpose of a spin cycle of a washing machine is to remove water from clothes.

The drum of radius, r, rotating with speed, v, will have a centripetal acceleration a = V^2/r which is provided by a centripetal force, acting toward the centre of the drum, which in turn has an equal and opposite reaction (centrifugal?) force.

The inertia of the clothes and the water particles causes them to keep moving in a straight line, that with the combination of the reaction force, causes them to move around the edge of the drum and the water particles move out through the holes in the drum, which then fly off at a tangent to the drum's rotation.
-----------------

But then I watched this lecture from MIT and he explained a similar situation with water particles in a test tube and said that they experience no centripetal force:

Please watch from 17:30 to 19:06

Immediately after he then does an identical experiment to my question (lettuce in a siv) and links it to his previous explanation.

So now I feel like an idiot, even though he has gone through almost a identical experiment I can not find a way to intuitively explain what is happening.

If anyone could talk me through this I would greatly appreciate it. I have 25 more lecture topics from this past semester to fully understand before the end of the christmas break!
 
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  • #2
The marble slides toward the outward end of the tube until it hits the end. At that point, if there's a hole big enough for the marble to escape out of it just keeps going.

Same thing with the washing machine, except it's droplets of water and the holes are big enough for the water but your clothes stay inside.

There's a confounding factor, which is that water tends to cling to your clothes, so it takes some time for the water to make it through the layers of clothes. Since the water (at least some of it) doesn't just go flying out, it means it does experience some centripetal acceleration.

While all that's going on, the clothes also get smashed up against each other on the inside of the drum. You can imagine that also helping to squeeze the water out of the clothes.
 
  • #3
Thanks, I was going to write something along the lines of that bout the 'explain in terms of acceleration components' was throwing me off.
 

Related to Centripetal force discussion question (Washing machine).

What is centripetal force?

Centripetal force is the force that acts on an object moving in a circular path towards the center of the circle. It is necessary to keep the object moving in a circular path.

How does centripetal force work in a washing machine?

In a washing machine, centripetal force is created by the rotation of the drum. The clothes inside the drum are constantly changing direction and the force acting towards the center of the drum keeps them moving in a circular motion.

What happens if there is not enough centripetal force in a washing machine?

If there is not enough centripetal force, the clothes will not be able to maintain a circular motion and will instead move in a straight line tangential to the circle. This can result in the clothes getting tangled and not being cleaned properly.

How is centripetal force related to the spin cycle in a washing machine?

The spin cycle in a washing machine is designed to increase the centripetal force acting on the clothes, allowing them to be pulled towards the center of the drum more forcefully. This helps to remove excess water from the clothes and dry them faster.

Are there any risks associated with centripetal force in a washing machine?

Yes, if the washing machine is overloaded or unbalanced, it can create too much centripetal force which can cause the machine to shake or even break. It is important to properly load the machine and evenly distribute the weight to avoid any potential risks.

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