If you were in a spaceship going at a speed of 9.8m/s^2, you would feel exactly same as if you were on the earth.
The eqivalence principle is a principle that replaces the actual source i.e (antenna , transmitter) by eqivalent sources
The equivalence principle states that gravitational mass and inertial mass are equivalent, meaning that the gravitational force experienced by an object is directly proportional to its inertial mass.
Both the machines are similar in capacity , by design and have same principle of operation .
The key principles of equivalence in chemistry refer to the concept that substances can react in specific ratios to form products. This principle is crucial in understanding chemical reactions as it helps determine the amount of reactants needed to produce a certain amount of products. In chemical reactions, the principle of equivalence ensures that the reactants and products are balanced in terms of their quantities, allowing for accurate predictions and calculations in chemical reactions.
anything that can be done with hardware can also be done with software and anything done with software can also be done with hardware.
Anything that can be done with Software can also be done with hardwa re, and anything that can be done in hardware can also be done with software...
No, the mass of an object does not affect the speed at which it falls to Earth. All objects fall at the same rate of acceleration due to gravity, regardless of their mass. This principle is known as the equivalence principle.
Yes, according to the theory of general relativity, all masses are accelerated by gravity at the same rate regardless of their mass or composition. This principle is known as the equivalence principle.
Yes, in the absence of air resistance, all objects fall at the same rate of acceleration due to gravity, regardless of their mass. This principle is known as Galileo's principle of the equivalence of inertia and gravitation.
They're not the same, but they're related through Einstein's energy-mass equivalence principle, probably the most famous equation in all of science: E = mc2.
In the absence of air resistance, all objects fall at the same rate regardless of their mass or composition. This principle is known as the equivalence principle of gravity. So, a ball closer to the ground would not fall faster than one higher up.
It mean the equivalence ratio is equal to 1.