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Alexeev081 [22]
3 years ago
12

A bullet traveling 25m/s takes 30 minutes to get to the station

Physics
1 answer:
Andrei [34K]3 years ago
3 0

Answer:

Assuming that you're asking for distance it's 45000 meters

Explanation:

Distance= Speed x Time

Distance= 25 meters/ second x 30 minutes

*Convert the time 30 minutes to seconds*

Distance= 25 meters/ second x 1800 seconds

*The unit second is now crossed out*

Distance= 45000 meters

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A block of ice(m = 14.0 kg) with an attached rope is at rest on a frictionless surface. You pull the block with a horizontal for
nadezda [96]

Answer:

a) The weight and the normal force of the block has a magnitude of 137.298 newtons and the pull force exerted on the block has a magnitude of 98 newtons.

b) The final speed of the block of ice is 9.8 meters per second.

Explanation:

a) We need to calculate the weight, normal force from the ground to the block and the pull force. By 3rd Newton's Law we know that normal force is the reaction of the weight of the block of ice on a horizontal.

The weight of the block (W), measured in newtons, is:

W = m\cdot g (1)

Where:

m - Mass of the block of ice, measured in kilograms.

g  - Gravitational acceleration, measured in meters per square second.

If we know that m = 14\,kg and g = 9.807\,\frac{m}{s^{2}}, the magnitudes of the weight and normal force of the block of ice are, respectively:

N = W = (14\,kg)\cdot \left(9.807\,\frac{m}{s^{2}} \right)

N = W = 137.298\,N

And the pull force is:

F_{pull} = 98\,N

The weight and the normal force of the block has a magnitude of 137.298 newtons and the pull force exerted on the block has a magnitude of 98 newtons.

b) Since the block of ice is on a frictionless surface and pull force is parallel to the direction of motion and uniform in time, we can apply the Impact Theorem, which states that:

m\cdot v_{o} +\Sigma F \cdot \Delta t = m\cdot v_{f} (2)

Where:

v_{o}, v_{f} - Initial and final speeds of the block, measured in meters per second.

\Sigma F - Horizontal net force, measured in newtons.

\Delta t - Impact time, measured in seconds.

Now we clear the final speed in (2):

v_{f} = v_{o}+\frac{\Sigma F\cdot \Delta t}{m}

If we know that v_{o} = 0\,\frac{m}{s}, m = 14\,kg, \Sigma F = 98\,N and \Delta t = 1.40\,s, then final speed of the ice block is:

v_{f} = 0\,\frac{m}{s}+\frac{(98\,N)\cdot (1.40\,s)}{14\,kg}

v_{f} = 9.8\,\frac{m}{s}

The final speed of the block of ice is 9.8 meters per second.

6 0
3 years ago
The diagram shows a wave. The quantity shown is the amplitude. This quantity is directly proportional to which of these other qu
Katen [24]

As we know that frequency and wavelength are dependent on each other

and this is given by

f = \frac{c}{\lambda}

here we know that

\lambda = wavelength

f = frequency

c = speed of wave

while for energy and intensity of wave we know that

Energy = KA^2

here A = amplitude of wave

so energy directly depends on amplitude of wave

so correct answer will be

<em>A) Energy</em>

3 0
3 years ago
Read 2 more answers
PLEASE HELP WILL GIVE BRAINLIEST!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
iVinArrow [24]

Answer:

D

D

C

C

Explanation: BRAINLIEST ME

6 0
3 years ago
the weigh of an unloaded mazda Cx-5 is appromimately 3300 pounds. what is the weight in units of newtons.
Lana71 [14]
14,697.13
 
Hope this Helps you :)
5 0
4 years ago
Read 2 more answers
A block (mass 5 kg) is initially moving to the left at 10 m/s. After hitting the wall, the ball is moving to the right at 5 m/s.
goldenfox [79]

Answer:

The impulse of the net force on the ball during its collision with the wall is 25N

Explanation:

Step one :

Given data

Mass =5kg

Velocity v1=10m/s

Velocity v2=5m/s

The equation for impulse is given as

P=m(v1-v2)

Where P =impulse

Substituting our values into the equation we have

P=5*(10-5)

P=5*5

P=25N

The impulse 25N

What is impulse?

Impulse is the change of momentum of an object when the object is acted upon by a force for an interval of time.

8 0
4 years ago
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