Theoretically it is known as the word mass .That is the best answer.
Inertia is related to the mass, and it is proportional to the mass. When measuring things, you will usually measure the mass, not the inertia - but it basically amounts to the same. Just consider the mass to be what gives an object its inertia.
To work out a pyramid of biomass, the dry masses of an organism is used because two of the same organisms could live in two different environments where one environment could be suffering from a drout whereas the other could live in a rainforest so to keep it fair they dry it out.
The total momentum before the collision is the same as the total momentum after the collision. This is known as "conservation of momentum".
Stringy masses of eggs are typically laid by species such as frogs, salamanders, and some insects like mosquitoes. These eggs are often laid in water or moist environments to increase their chances of survival. The long strings or masses of eggs are usually protected by gelatinous coatings to keep them hydrated and safe from predators.
It would be the one taller then the original graph. APEX
Yes, an object's density is the measure of how much mass is contained in a given volume. It is calculated by dividing an object's mass by its volume, providing a relative measure of how tightly-packed the matter is within the object compared to a known standard, such as water.
An object's mass is a measure of the amount of matter it contains, and it can be compared to known masses using a balance scale or other measuring instruments. Mass is commonly measured in units such as kilograms or grams.
Objects have different mass because they not weighted the same..
measure objects, masses. and liquids.
When the volume is constant, the masses of two objects will differ based on their densities. The object with a higher density will have a greater mass compared to an object with a lower density. Density is a measure of how much mass is packed into a given volume, so if the volume is constant, objects with higher density will have greater mass.
newton
an object consists of elements and it's density, mass and atomic structure. coal has the same elements as a diamond but its arrangement of its structure.
yes nab
There is more gravitational force between objects with large masses compared to objects with small masses, as gravitational force increases with the mass of the objects. This is described by Newton's law of universal gravitation, which states that the force of gravity is directly proportional to the product of the masses of the two objects and inversely proportional to the square of the distance between them.
The amount of gravitational force between two objects depends on their masses and the distance between them. The force increases with the mass of the objects and decreases as the distance between them increases.
Masses and distances
Similar forces will result in different accelerations on objects of different masses. According to Newton's second law, F = ma, where F is the force applied, m is the mass of the object, and a is the acceleration. Objects with larger masses will experience smaller accelerations compared to objects with smaller masses when subjected to the same force.