Answer:
d. temperature
Explanation:
Total internal energy of system of ideal gas is given as
here we know that
f = degrees of freedom of gas
T = absolute temperature of the gas
no here if type of gas is same then we can say that internal energy of the gas is directly dependent on the temperature of the gas
so here correct answer will be
d. temperature
The portion of internal energy directly proportional to a system's absolute temperature is referred to as thermal energy. It is the energy due to the random motions of atoms or molecules.
The portion of the total internal energy of a system that is proportional to its absolute temperature is known as thermal energy. The internal energy of a system encompasses both kinetic and potential energy of particles within a system.
Thermal energy, on the other hand, specifically refers to the portion of this energy associated with the random movement of atoms or molecules and is directly proportional to the absolute temperature. For example, when you heat a pot of water, the thermal energy of the system (the water) increases in proportion to the rising temperature.
#SPJ3
-Kayla lifts 15kg weights up at a velocity of 2.6m/s
0
Which friend is creating more momentum?
Answer:
Kayla. You can calculate it using the formula for momentum: momentum=mass×velocity and find the bigger number between the two momentums
A) The star must be very large.
B) The star must be very small.
C) The star must be moving away from Earth.
D) The star must be moving closer to Earth.
Answer: The correct answer is balanced force.
Explanation:
Balanced forces are balanced when the forces are acting equal in magnitude but opposite in direction. The balanced forces will not cause change in the speed of the object.
Unbalanced forces are unbalanced when the forces acting on the object are not equal in magnitude. The combined force is the difference between the forces. It will cause the change in the speed of the body.
Therefore, forces that are equal in size but opposite in direction are balanced.