Yes. It is thought to be about the size of almost 0.0000000001 yoctometers.
Some would disagree and claim that time has no definite physical form, but exists only in the human mind (to be a creation of humans, not a law of our universe).
The mass of the International Space Station is approximately 420,000 kilograms.
Space and mass are related in the sense that mass affects the curvature of space according to Einstein's theory of general relativity. Massive objects create gravitational fields that curve space-time, while the presence of mass also determines the motion of objects within that space. In essence, mass warps the fabric of space-time, influencing the behavior and interactions of objects within it.
The unit of mass that is used in space is the same unit of mass that is used on Earth. you can use Kg, g, pounds, tones...
Your mass would be 48kg both on Earth and in space as mass remains constant regardless of location. Weight, on the other hand, would vary depending on the gravitational pull of the celestial body you are on.
When the boosters are separated from the space vehicle, the mass of the vehicle will decrease because it is losing the mass of the boosters. This reduction in mass allows the remaining vehicle to accelerate more efficiently and achieve its intended trajectory in space.
Matter does.
The mass of space in our universe is 2.1e53 kg.
MATTER. Has a mass and volume(occupies space).
Yes, mass takes up space because mass is a measure of matter in an object, and matter occupies physical space. The more mass an object has, the more space it takes up.
Objects have mass and occupy space. Persons have mass and occupy space.
mass is the amount of space
mass is the amount of space
Matter
Matter is something which occupies space and has mass.
no taking up space is having mass.
The mass of the International Space Station is approximately 420,000 kilograms.
No. Matter is anything that has mass and takes up space (has volume). Energy has no mass and does not take up space, therefore it is not matter.