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Llana [10]
3 years ago
9

What factors would influence a balls ability to conserve energy

Physics
1 answer:
Alex17521 [72]3 years ago
7 0
How big the ball is and how fast it is
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On a day the air is still a windmill still posses what type of energy is that ?
Montano1993 [528]

Well, it's up on top of a pole or pedestal of some sort,
so it has some gravitational potential energy relative to
the ground.  In other words, if it somehow became detached
from its structure and fell to the ground, it would make quite
an energetic splat when it got there.

Also, the windmill is at the temperature of the air around it,
which is far from Absolute Zero, so the windmill holds a lot of
thermal (heat) energy.

Then I guess there's the matter of the chemical energy in the
molecules of the material that the windmill is made of, and the
nuclear energy in its atoms.

6 0
3 years ago
A horse runs in a straight line, moving 38 m away in 9.0 s. It then turns back and runs halfway back in 1.8 s. Find its average
podryga [215]

Answer:

22

Explanation:

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7 0
3 years ago
Does the mass of an object dictate the acceleration of<br> a falling object
muminat

Answer:

No.

Explanation:

Because the acceleration of falling objects is constant and is not affected by mass

5 0
3 years ago
Read 2 more answers
A cyclist traveling at 30.0m/s along a straight road comes uniformly to stop in 5.00s. Determine the stopping acceleration, the
Amiraneli [1.4K]

Answer:

I. Stopping acceleration = 6 m/s²

II. Stopping distance, S = 75 meters

Explanation:

Given the following data;

Final velocity = 30 m/s

Time = 5 seconds

To find the stopping acceleration;

Mathematically, acceleration is given by the equation;

Acceleration (a) = \frac{final \; velocity  -  initial \; velocity}{time}

Substituting into the equation;

a = \frac{30 -  0}{5}

a = \frac{30}{5}

Acceleration = 6 m/s²

II. To find the stopping distance, we would use the third equation of motion;

V^{2} = U^{2} + 2aS

Where;

V represents the final velocity measured in meter per seconds.

U represents the initial velocity measured in meter per seconds.

a represents acceleration measured in meters per seconds square.

Substituting into the equation, we have;

30² = 0² + 2*6*S

900 = 12S

S = 900/12

S = 75 meters

7 0
3 years ago
The position of a particle s given by x=3-2t+3t^2. What is its instantaneous velocity and instantaneous acceleration as t=3.
Leno4ka [110]

Explanation:

velocity = dx/dt

\frac{dx}{dt}  = 6t - 2 = 16

acceleration =

\frac{ {d}^{2}x }{d {t}^{2} }  = 6 \ \\

5 0
3 years ago
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