1) Final angular velocity is 5.22 rad/s
2) Change in kinetic energy: 639.8 J
Explanation:
1)
In absence of external forces, the angular momentum of the merry-go-round must be conserved.
So we can write:
where
is the initial moment of inertia
is the final moment of inertia
is the initial angular velocity
is the final angular velocity
At the beginning, we have:
The moment of inertia is the sum of the moment of inertia of the cylinder + the moment of inertia of the man, therefore:
The man later walks to a point 1 m from the centre, so the final moment of inertia is:
Therefore, the final angular velocity is
2)
The angular velocity of the merry-go-round rotating is given by
In the first situation, we have
Therefore
In the second situation, we have
Therefore
So the change in kinetic energy is
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Answer: Option B
Explanation:
When the thermal energy is transferred from a hotter body to the colder body then the transfer of energy takes place until the temperature of both the objects are same.
The energy from the hotter body is transferred to the colder body. Example: The heat transfer from the hotter water takes place into the colder water.
The energy transfer will stop only when the temperature of both the water will be same.
I'm like 98% it's D.
Answer:
Explanation:
If there are n number of groups in an activity and the data produced among them is copied or is same then it is termed as reproducible.
To have an experiment that gives a reproducible data there are few key points which we need to keep in mind.
1- The circumstances provided for every group should be same.
2- Each group must be selected in such a way that participants must have same set of thought processing and mind set toward the situation.
Answer:
When it is cloudy, many of the sun’s rays never reach the Earth. It leads to cooler temperatures.
Explanation:
During the day, the sun warms the earth. When the sky is clear, more heat reaches the earth's surface . This leads to warmer temperatures.
However, when the sky is cloudy, a few drops of clouds reflect some of the sun's rays. As a result, less solar energy can reach Earth's surface, causing Earth to heat up more slowly. This leads to cooler temperatures.
If cloudy skies are forecast when forecasting daytime temperatures, expect lower temperatures than you would expect if clear skies were forecast.
Similarly, cloud cover at night has the opposite effect. When the sky is clear, the heat emitted from the earth's surface freely escapes into space, resulting in cooler temperatures.
However, when there are clouds, some of the heat from the earth's surface is captured by the clouds and returned to the earth. As a result, temperatures drop more slowly than when the sky is clear.