The answer could be gravitational acceleration.
Specific gravity of quartz > 2.65; variable 2.59-2.63 in impure varieties.
Weight depends on gravity because it is the force with which gravity pulls on an object. Mass, on the other hand, is a measure of the amount of matter in an object and is the same regardless of the gravitational field it is in.
A pull. Gravity is always attractive, so in the long run, gravity is the deciding factor in the motions of planetary bodies
Yes, instruments that measure mass usually rely on gravity to function. They measure the force of gravity acting on an object to determine its mass. The mass of an object is directly proportional to the force of gravity acting on it.
Yes, gravity affects the weight of an object. Weight is the force exerted on an object due to gravity, so the strength of gravity directly impacts an object's weight. Objects will weigh less in a weaker gravitational field and more in a stronger one.
Without gravity, water drops wouldn't fall and the water clock wouldn't be able to function.
Gravity, which is a function of the earth's mass, is a constant force toward the center of the earth.
because the earth gravity of the gravity
it measures the specific gravity of urine
because of the gravity of the earth
gravity. the stuff that holds us on earth.
gravity
To reduce pooling due to gravity.
Specific gravity of quartz > 2.65; variable 2.59-2.63 in impure varieties.
It is an instrument to measure or gauge density of gravity.
In medicine, specific gravity is used to measure the function of kidneys. Decreased specific gravity means that there is a lower concentration of solutes in urine, which may indicate decreased kidney function or renal failure.
Gravity causes mass movement with sediments. Examples of this are anything with slope. Since gravity pulls everything to the center of the Earth, and natural slopes exist, gravity pulls rocks down different varieties of slopes. An example of this can be a mud slide. This can cause sediments to be pulled downward and deposited in erosion.