b. C
c. Fe
d. He
Answer:
When you view the candle with a lens, located at a distance D of the candle, you will see an inverted image of the candle, and this image of the candle may be a little distorted. At this point you need to change the distance between the observer (you) and the lens.
When the image of the candle is nitid (this means that the image is focalized)
You need to measure the distance between the lens and the observer. suppose that this distance is d.
(this process is usually written as: If the actual height of the candle is H, you need to record the distance where the image of the candle also has a height H)
Now, the focal point of the lens will be obtained with the lens maker equation:
1/D + 1/d = 1/f
where f is the focal point of the lens.
The energy possess is 6,000,000 J
The kinetic energy is a energy by which an object can move and potential energy is a stored energy which depends upon the relative position of various parts of the body.
Given:
The mass of automobile is .
The velocity of the automobile is .
Write the formula to calculate the potential energy of the body.
Since the automobile is on ground so the height will be 0.
Write the formula to calculate the kinetic energy.
Substitute the value.
Learn more about potential energy and kinetic energy follow below link:
Answer:
6,000,000 J (6 million)
Explanation:
Refer to the equations for potential and kinetic energy.
Because the automobile is on the ground (it does not give a height above the ground, therefore we can assume that it is on the ground), height = 0. If you plug in 0 for h in the potential energy equation, we get PE = 0 J.
Therefore, all of the energy is kinetic. Plug in the given information into the kinetic energy equation. M = 1200 kg and v = 100 m/s
Oh, I just realized you asked for a body part, and there is only one body part in the circulatory system, my bad. That would be the heart. But, it also contains veins, arteries, capillaries, and blood. It's main function to pump blood to supply oxygen to the body.
Hope this helps!
Answer: The Rate constant is 1.209
Explanation:
in the attachment
Explanation:
Below is an attachment containing the solution.