Even though a sponge may be the same size as a book, the sponge has hundreds of holes in it. The book has far more material in the same amount of space that the sponge takes up. In other words, the book is far more dense than the sponge.
A sponge has less mass than a book of the same size because a sponge is less dense. The sponge is made up of more air pockets and less material compared to the dense paper and binding of a book, which results in the sponge weighing less for the same size.
A sponge is less dense than a book, meaning it has more empty space and less mass per unit volume. The sponge is made up of air pockets and a porous structure, whereas a book is made of compact paper or other dense materials. This difference in density leads to the sponge having less mass for the same size as a book.
Both .
Because the acceleration depends on the gravitational force on the object. But the gravitational force on the object depends on its mass ... More mass = more force. Objects with less mass have less force on them, and objects with more mass have more force on them, and the force on each object is exactly enough so that each object winds up falling with the same acceleration.
It requires less force to accelerate a low mass object because the acceleration produced is directly proportional to the force applied and inversely proportional to the mass of the object. Therefore, a smaller mass object will experience a greater acceleration for the same applied force compared to a higher mass object.
A sponge has less mass than a book of the same size because a sponge is less dense. The sponge is made up of more air pockets and less material compared to the dense paper and binding of a book, which results in the sponge weighing less for the same size.
A sponge is less dense than a book, meaning it has more empty space and less mass per unit volume. The sponge is made up of air pockets and a porous structure, whereas a book is made of compact paper or other dense materials. This difference in density leads to the sponge having less mass for the same size as a book.
the sponge has less molecules where as the book has more molecules in one place
Both .
no; they have the same volume but their mass is quite different; density is mass/volume and the sponge has much lower density
Because the acceleration depends on the gravitational force on the object. But the gravitational force on the object depends on its mass ... More mass = more force. Objects with less mass have less force on them, and objects with more mass have more force on them, and the force on each object is exactly enough so that each object winds up falling with the same acceleration.
Mass is the same no matter where you are. Weight is less, but mass is the same.
It requires less force to accelerate a low mass object because the acceleration produced is directly proportional to the force applied and inversely proportional to the mass of the object. Therefore, a smaller mass object will experience a greater acceleration for the same applied force compared to a higher mass object.
A brick weighs more than a sponge because its material, such as clay or concrete, is denser and more compact than the material of a sponge, which is porous and lightweight. The density of the brick's material causes it to have more mass packed into the same volume compared to the sponge.
Your mass will stay the same. Mass is always the same no matter what.
No, a lead ball is more dense than a sponge ball because lead has a higher density compared to the sponge material. Density is the measure of how much mass is contained in a given volume, so the lead ball would have more mass packed into the same volume as the sponge ball.
No, your mass remains the same regardless of the gravitational force acting on you. Weight is dependent on gravity and mass, so on the moon where gravity is weaker, you would weigh less compared to on Earth, but your mass would stay constant.