power
force
energy
inertia
The rate of doing work is called power.
Hence, the correct option is A.
Power is a measure of how quickly or how much work is done per unit of time.
It is the amount of energy transferred or converted per unit time. The unit of power is the watt (W), where 1 watt is equal to 1 joule of work done per second.
Therefore, The rate of doing work is called power.
Hence, the correct option is A.
To know more about power here
#SPJ6
Power is the correct term in physics for the rate of doing work. It signifies the amount of work done or energy converted per unit of time. Other options provided like force, energy, and inertia have different meanings in physics.
The rate of doing work is called power. In physics, power is defined as the amount of work done or energy converted per unit of time. For example, when you lift a heavy box, you're doing work, and the faster you lift that box (maintaining the same force), the more power you're exerting.
Whereas force is a push or pull upon an object resulting from the object's interaction with another object, energy is the capacity for doing work, and inertia refers to an object's resistance to change in motion.
#SPJ6
Answer:
choice B
Explanation:i took the test
Answer:
ITS D
Explanation:
if its wrong i will comeback and re do it
Answer:
Explanation:
The acceleration of an object given it's mass and the force acting on it can be found by using the formula
where
f is the force
m is the mass
We have
We have the final answer as
Hope this helps you
Answer: BUTT
Explanation: Because its a Cheek;)
When energy is transferred to air, the particles of air move faster.
A huge number of submicroscopic particles, including atoms and molecules, are used in the kinetic theory of gases, a theoretical model, to characterize the molecular makeup of the gas.
The idea also states that gas pressure results from particles slamming into one another and the container walls. In addition to defining physical characteristics like temperature, volume, and pressure, kinetic theory of gases also defines transport characteristics like viscosity, thermal conductivity, and mass diffusivity.
It essentially explains every characteristic connected to the tiny phenomenon. The idea is significant because it aids in creating a relationship between macroscopic properties and tiny phenomena.
Learn more about kinetic theory of gases here:
#SPJ6
Answer:
rapid diffusion of gas throughout the system
Explanation: