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vredina [299]
3 years ago
10

A concrete highway curve of radius 60.0 m is banked at a 19.0 ∘ angle. what is the maximum speed with which a 1400 kg rubber-tir

ed car can take this curve without sliding? (take the static coefficient of friction of rubber on concrete to be 1.0.)
Physics
1 answer:
allochka39001 [22]3 years ago
7 0

Answer:24.26m/s

Explanation:coefficient of static friction is = v^2/rg

1.0=v^2/60*9.81

1.0=v^2=588.6

V^2=588.6

V=24.26m/s

caligirl
2 years ago
looooooooooooooooooooooooooser.
caligirl
2 years ago
sorry. I did not mean that. Your answer of 24.26m/s is wrong.
caligirl
2 years ago
My apologies.
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Based on the half-life of the reaction, time taken for the partial pressure of ammonia to decrease from 0.100 atm to 0.00625 atm is 800 seconds.

<h3>What is the half-life of a substance?</h3>

The half-life of a substance is the time taken for half the amount of atoms present in that substance to decay.

The half-life of the reaction is 200 seconds.

After, one half-life, pressure reduces to 0.0500 atm

After, two half-lives, pressure reduces to 0.0250 atm

After, three half-lives, pressure reduces to 0.01250 atm

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Time taken = 4 * 200 = 800 seconds

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A car with mass mc = 1490 kg is traveling west through an intersection at a magnitude of velocity of vc = 9.5 m/s when a truck o
icang [17]

Answer:

v= - 4.507 i - 2.363 j

Explanation:

 Given that

mc= 1490 kg

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There is any external force so linear momentum will remain conserve.

Lets take final speed is v.

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1490 x 9.5 ( - i) + 1650 x 6.4 ( -j) = ( 1490+1650) v

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