Answer:
B. 17,705.1 J
Explanation:
The hear released when the mercury condenses into a liquid is given by:
where
m = 0.06 kg is the mass of the mercury
is the latent heat of vaporization
For mercury, the latent heat of vaporization is , so the heat released during the process is:
So, the closest option is
B. 17,705.1 J
The energy ( in joules ) released when 0.06 kilograms ofmercury is condensed to a liquid at the same temperature is about 697.08 J. inother to solve this problem, should know the latent heat of fusion of mercurywhich is equal to about 11.4 kJ/kg and multiplying by mass of mercury.
The work is an effect that is observed due to the application of force. Taking the concern of work-energy principle, the work is done when there is a transfer of energy take place.
When some magnitude of the force is being applied on an object to displace, then the term used to describe the effect is known as work done.
The mathematical expression for the work done is given as,
W = F × d
here,
F is the magnitude of applied force.
d is the displacement.
If we compare work with energy then, Energy, on the other hand, is the ability to do work. According to the work-energy principle, a change in the kinetic energy is equivalent to the net work done by the object. Therefore, energy is being transferred from one point to another when work is being done.
Thus, we can conclude that the work is done when a transfer of energy takes place.
Learn more about the work done here:
Energy is being transferred
Work = force × distance.
Answer:
(C)
Explanation:
Because the photons being different makes them have different amounts of energy, they both with have a precise and different energy from each other.
Answer:
A. the number of protons in an atom
Explanation:
The atomic number (also known as the proton number) is the number of protons found in the nucleus of an atom.
Answer:
A. the number of protons in an atom
Explanation: