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Tanya [424]
3 years ago
15

a car initially traveling at 60 km/h accelerates at a constant rate of 2.0 m/s ^2. how much time is required for the Car to reac

h a speed of 90km/h
Physics
1 answer:
andrezito [222]3 years ago
8 0
First put km/h into m/s. We get the car is traveling at 16.67m/s and that he need to get up to 25m/s (90km/h). Now since we know what vf, vi, and a are, we can plug this into vf = vi + at and using algebra get t= 25-16.67/2, so t= 4.165s
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Answer:D

Explanation:

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The answer to your question is A.
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Describe alternating current and direct current. Include two ways that they are alike and one way that they are different.
ikadub [295]
Here is your answer:

1. A alternating current is a current "is an electric current which periodically reverses direction." A direct current is a "<span>current which flows only in one direction."

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5 0
3 years ago
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If a dog has a potential energy of 1500 J and a mass of 24 kg, how high off the ground is he?
Llana [10]

Answer:

h = 6.371 m

Explanation:

Data:

Potential Energy = P.E = 1500 J

Mass = m = 24 Kg

Gravity = g = 9.81 m/sec²

Height = h = ?

Solution:

As the formula for the Potential Energy is;

P.E = mgh

Replacing the values in the above equation

1500 = 24 × 9.81 × h

h = (1500)÷(24 × 9.81)

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8 0
3 years ago
In serving, a tennis player accelerates a 59 g tennis ball horizontally from rest to a speed of 34 m/s Assuming that the acceler
Akimi4 [234]

Answer:

The magnitude of the force exerted on the ball by the racquet is 94.73 N.

Explanation:

The force exerted on the ball is the following:

F = ma

Where:

m: is the mass of the ball = 59 g

a: is the acceleration

The acceleration of the ball can be found with the following kinematic equation:

v_{f}^{2} = v_{0}^{2} + 2ad

Where:

d: is the distance = 0.36 m

v_{f}: is the final speed = 34 m/s

v_{0}: is the initial speed = 0 (it start from rest)

Hence, the acceleration is:

a = \frac{v_{f}^{2}}{2d} = \frac{(34 m/s)^{2}}{2*0.36 m} = 1605.6 m/s^{2

Finally, the force is:

F = ma = 59 \cdot 10^{-3} kg*1605.6 m/s^{2} = 94.73 N    

Therefore, the magnitude of the force exerted on the ball by the racquet is 94.73 N.                                

                                                                 

I hope it helps you!                                                              

6 0
3 years ago
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