Donate SIGN UP

physics question

Avatar Image
mmmhelp | 05:40 Mon 10th Nov 2008 | Science
3 Answers
Tom is chasing Jerry across the surface of a table 1.5m above the floor. At the last second Jerry steps out of the way and Tom slides off the edge at a speed of 5.0 m/s. Where will Tom strike the floor and what velocity components will he have just before he hits?
Gravatar

Answers

1 to 3 of 3rss feed

Best Answer

No best answer has yet been selected by mmmhelp. Once a best answer has been selected, it will be shown here.

For more on marking an answer as the "Best Answer", please visit our FAQ.
You need to use Newton's laws of motion.

First find out how long it takes Tom to hit the ground

Use X=Ut + �at�

In the vertical plane X is the height of the table and a is the acessleration due to gravity (9.8 m/s) U is 0 because that's the initial speed vertically.

Work out t (the number of seconds to impact)

Now you can think horizontally

Apply the same formula

Now X is the distance from the table tom will strike - there's no acceleration so it's just

X=Ut youre given U (5m/s) and you've just worked out t.

The horizontal velocity component is unchanged because there's no acceleration

The Vertical velocity component you can get from V=U+at
U is 0 of course and a is still the acceleration due to gravity.

Best of luck
Before I get picked up on it acceleration is m/s not m/s
Long answer

how long will J take to hit the floor

h = 1/2 gt 2 h is 1.5 and g is 10

so t turns out to be root - three over ten

bleeach - they might have given numbers taht fit together well. Call this a half

J travels along at 5 m/s for half a second, which is around 2.5 metres out.

velocity components - Oh God that is why the answer is so long - see above - Vh is 5 as ever
and Vvert is gt which is 10 x half or 5 again

Trouble with me is that I start to answer the q
without reading the whole lot.

Good question

I have Fatty Barratt to thank for this analysis who taught me dynamics in 1968 - clearly very um clearly. He used to rattle through these.

1 to 3 of 3rss feed

Do you know the answer?

physics question

Answer Question >>