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alukav5142 [94]
3 years ago
15

If a man weighs 790 N on Earth, what would he weigh on Jupiter, where the acceleration due to gravity is 25.9 m/s2

Physics
1 answer:
sergey [27]3 years ago
7 0

Answer:

The weight is   W_J  =  2087.9 \ N

Explanation:

From the question we are told that

   The weight of the man on earth  is  W =  790 \  N

  The acceleration due to gravity on Jupiter is a = 25.9 \ m/s^2

Gnerally the mass of the man is mathematically represented as

     m  =  \frac{W}{g}

=>   m  =  \frac{790 }9.8 }

=>   m  =  80.61 \  kg

Gnerally the weight in Jupiter is  

    W_J  =  m  *   a

=>  W_J  =  80.61  * 25.9

=>  W_J  =  2087.9 \ N

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Explanation:

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When you blink your eye, the upper lid goes from rest with your eye open to completely covering your eye in a time of 0.024 s.
dusya [7]

a) Distance moved by the top lid during a blink: 1 cm (estimate)

b) The acceleration is 34.7 m/s^2

c) The final speed is 0.83 m/s

Explanation:

a)

For the purpose of this problem, we can estimate the size of the eye from the top lid to the bottom lid to be 1 cm, so this is the distance moved by the top lid during a blink.

b)

Assuming the motion of the eyelid to be at constant acceleration, we can find the acceleration by using the following suvat equation:

s=ut+\frac{1}{2}at^2

where

s is the distance covered

u is the initial velocity

t is the time

a is the acceleration

For the eyelid, we have:

u = 0 (it starts from rest)

s = 1 cm = 0.01 m is the distance covered

t = 0.024 s is the time taken

Solving for a, we find the acceleration:

a=\frac{2s}{t^2}=\frac{2(0.01)}{0.024^2}=34.7 m/s^2

c)

The final speed of the upper eyelid can be found by using another suvat equation:

v=u+at

where

v is the final speed

u is the initial speed

a is the acceleration

t is the time

For the eyelid in this problem, we have

u = 0

a=34.7 m/s^2

t = 0.024 s

Substituting, we find the final speed:

v=0+(34.7)(0.024)=0.83 m/s

Learn more about accelerated motion:

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