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elixir [45]
3 years ago
6

Help! Plssssss 30 points!

Physics
1 answer:
Rashid [163]3 years ago
7 0
The bigger the starting force, the further the distance moved by the car?
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Which of these observations would most likely be seen in stage N
Free_Kalibri [48]
'N' is labelled 'runoff'. That's when the water is down. Streets are wet, worms come out of the ground, and water flows down the street to the sewer.
3 0
3 years ago
May I please get some help?
morpeh [17]

Answer:

13.4 m/s

Explanation:

Write down what you have, so:

V0=8 m/s

a=2.7 m/s^2

t=2 seconds

We are trying to find final velocity, so we will use vf = v0 + at

From there, we plug in the given values.

vf = 8 m/s + (2.7 m/s^2 x 2 seconds)

vf = 13.4 m/s

5 0
4 years ago
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The stage of young adulthood in which individuals take time to find themselves is A. emerging adulthood. B. the period of role d
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I believe the answer would be A. emerging adulthood. (teenager)
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3 years ago
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If the radius of the atom is the distance from point A to D, where is the MOST likely location of the LEAST concentration of mas
lana [24]

Answer: B

Explanation:

3 0
4 years ago
a 1.34kg block sliding on a horizontal surface collides with a spring of force constant 1.93 N/cm. The block compresses the spri
sdas [7]

Answer:

v=65m/s

Explanation:

Friction force to find the speed of the block at the instant of collision so

E_1=\frac{1}{2}*K*x^2

x=4.16cm

E_1=\frac{1}{2}*1.93N/cm*(4.16cm)^2

E_1=0.167 J

E_2=117mJ=0.117J

K_E=E_1+E_2=284J

K_E=\frac{1}{2}*m*v^2

Solve to v' to find the velocity

v=\sqrt{\frac{2*K_E}{m}}

v=\sqrt{\frac{2*0.283J}{1.34kg}}=\sqrt{0.424 m^2/s^2}

The speed of the block at the instant of collision with the spring is

v=65m/s

7 0
3 years ago
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