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vekshin1
3 years ago
15

Based on the model you saw in the study, predict what will happen to the motion of the water molecules as the temperature decrea

ses?

Physics
1 answer:
vlabodo [156]3 years ago
8 0

C. The molecules will move more slowly

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If an object on a horizontal frictionless surface is attached to a spring, displaced, and then released, it oscillates. Suppose
o-na [289]

Answer:

a. Amplitude = 0.244 meters

b. Period = 1.62 seconds

c. Frequency = 0.6173 Hz

Explanation:

a.

With the position goes from 0.122 meters to -0.122 meters (negative because it is in the opposite side of the equilibrium point), the amplitude is the maximum value minus the minimum value:

Amplitude = 0.122 - (-0.122) = 0.122 + 0.122 = 0.244 meters

b.

The period is the amount of time the object takes to arrive in the same position again. So, if it takes 0.81 seconds to go to -0.122 m, it will take another 0.81 seconds to come back to 0.122 m, so the period is the sum of these two times:

Period = 0.81 + 0.81 + 1.62 seconds

c.

The frequency of the movement is the inverse of the period:

Frequency  = 1 / Period

So if the period is 1.62 seconds, the frequency is:

Frequency = 1 / 1.62 = 0.6173 Hertz

5 0
3 years ago
A car traveling at a speed of 24 m/s comes to a stop at a red light.
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u=24m/s

v=0m/s

-a=8m/s^2

now

v=u+at

0=24-8t

t=3s

4 0
3 years ago
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The number of times that a wave vibrates in unit is called
kari74 [83]
I believe it's frequency. 
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4 years ago
1 Item 1 Item 1 1.25 points circular ceramic plate that can be modeled as a blackbody is being heated by an electrical heater. T
Elena L [17]

Answer:

174.85 W

Explanation:

Area of plate = 3.14 x (15x 10⁻²)²

= 706.5 x 10⁻⁴ m²

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= 139.88 W. This energy needs to be fed by heat source to maintain a constant temperature of 180 degree.

If power of electric source is P

P x .8 = 139.88

P = 139.88 / .8

= 174.85 W

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3 years ago
What is the effect of putting a ferromagnetic material inside the coil of a solenoid?
evablogger [386]
It strengthens the magnetic field.
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4 years ago
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