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#1
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Imagine you are suspended hanging on to a rope...
That rope is on a pulley. On the other end and the other side of the pulley is a mass perfectly matching your own weight. The pulley is a frictionless system. You start to climb. What happens? |
#2
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The counterweight and yourself will constently equilize, so you will have extra rope on your end but eventually you will both be at the top of the rope by the pulley.
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#3
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In a frictionless system you will start the counterweight in an upward motion. It will fly over the top of the pulley, smack you on the head and leave you on the ground dead.
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#4
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[ QUOTE ]
Imagine you are suspended hanging on to a rope... That rope is on a pulley. On the other end and the other side of the pulley is a mass perfectly matching your own weight. The pulley is a frictionless system. You start to climb. What happens? [/ QUOTE ] You take off? |
#5
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[ QUOTE ]
Imagine you are suspended hanging on to a rope... That rope is on a pulley. On the other end and the other side of the pulley is a mass perfectly matching your own weight. The pulley is a frictionless system. You start to climb. What happens? [/ QUOTE ] The rope breaks, and you fall into the decorative fountain ass-first. Stan and Ollie help you out, but get pulled in by mistake. |
#6
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Here's a better one:
![]() Discuss. <font color="white"> I don't think this defies the laws of physics, though I'm fairly sure it wreaks havoc on KITT's transmission. </font> |
#7
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It's got to be rear-wheel drive? [img]/images/graemlins/tongue.gif[/img]
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#8
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[ QUOTE ]
Here's a better one: ![]() Discuss. <font color="white"> I don't think this defies the laws of physics, though I'm fairly sure it wreaks havoc on KITT's transmission. </font> [/ QUOTE ] looks like Michael and Kit are about to save the [censored] day |
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