yes
Yes, a solid would have the same mass on the moon as it would on earth. An object's mass is independent of the force of gravity, so its mass would remain the same even in the absence of gravity (e.g. on a spaceship). What would change is the weight, which is measured with mass in proportion to gravity.
The same as on earth because mass remains constant everywhere if you are thinking about the "weight" then it will be changed .
No, the mass of the object remains the same regardless of location, so it would still be 180 g on both the Moon and Earth. However, weight is dependent on the gravitational pull of the body, so the weight of the object would be different on Earth compared to the Moon due to their differing gravitational strengths.
The mass of the Sun is usually specified in kilograms, which is the international unit for mass. Simply multiply that by 1000, to get the mass in grams. (Since the mass is usually given in scientific notation, just add 3 to the exponent.)
On the Moon, the mass of a pencil would remain the same (since mass is an intrinsic property of an object), so it would still be the mass it has on Earth. However, the weight of the pencil would be about 1/6th of its weight on Earth due to the lower gravity on the Moon.
This mass is 5,323 grams.
100.2 grams. There's no loss of mass when something dissolves. If there was then you'd get what might amount to an enormous explosion caused by the loss of mass in the same way as an atomic bomb works.
1
A solid object, such as a rock or a metal bar, would most appropriately have its mass measured in grams and its volume measured in milliliters.
Tin has a density of 7.365 grams per cubic centimeter as a solid. As a liquid, it has a density of 6.99 grams per cubic centimeter. So 5.5 liters of solid tin would mass 40.508 kilograms and 5.5 liters of liquid tin would mass 38.445 kilograms.
The mass is 5,323 g.
A balance or scale is typically used to find the mass of a solid. The solid is placed on the balance, and its mass is measured in units such as grams or kilograms.
32.4
Grams solid mol/g Hfusion
The mass of the ball in grams would be 5000 grams. This is because there are 1000 grams in 1 kilogram.
The mass of the solution would be the sum of the mass of the sodium chloride and the mass of water. So, the mass of the solution would be 17.8 grams (NaCl) + 217 grams (water) = 234.8 grams.
The apple would most likely have a mass of 250 grams