Crumpled.
A crumpled piece of paper falls faster than an uncrumpled paper due to its shape. The crumpled paper has more air resistance, meaning it will accelerate faster towards the ground compared to the flat paper. The crumpled paper falls in a more streamlined and compact manner, reducing air resistance and allowing it to fall faster.
A flat piece of paper has a larger surface area exposed to the air, creating more air resistance compared to a crumpled piece that has a smaller surface area. This increased air resistance slows down the flat paper's motion more than the crumpled paper.
When a piece of paper is rolled up, it creates more air resistance due to its irregular shape compared to when it's flat. The increased air resistance slows down the fall of the rolled up paper compared to the flat paper.
The wad of paper has a larger surface area to volume ratio, creating more air resistance. This air resistance slows down the wad of paper compared to the flat sheet of paper, which has less surface area and less air resistance acting upon it.
A crumpled paper has a larger surface area and more air resistance compared to a flat sheet, which results in it falling more slowly. Air resistance acts against gravity, slowing down the descent of the paper.
A crumpled piece of paper falls faster than an uncrumpled paper due to its shape. The crumpled paper has more air resistance, meaning it will accelerate faster towards the ground compared to the flat paper. The crumpled paper falls in a more streamlined and compact manner, reducing air resistance and allowing it to fall faster.
A flat piece of paper has a larger surface area exposed to the air, creating more air resistance compared to a crumpled piece that has a smaller surface area. This increased air resistance slows down the flat paper's motion more than the crumpled paper.
When a piece of paper is rolled up, it creates more air resistance due to its irregular shape compared to when it's flat. The increased air resistance slows down the fall of the rolled up paper compared to the flat paper.
Because a flat piece of paper has a larger surface area and therefore more wind resistance. But in a crumbled piece of paper the wind resistance is less.
The wad of paper has a larger surface area to volume ratio, creating more air resistance. This air resistance slows down the wad of paper compared to the flat sheet of paper, which has less surface area and less air resistance acting upon it.
A crumpled paper has a larger surface area and more air resistance compared to a flat sheet, which results in it falling more slowly. Air resistance acts against gravity, slowing down the descent of the paper.
When a paper is crumbled, the air resistance it experiences increases due to the irregular shape, causing it to fall more slowly than a flat piece of paper. The increased air resistance creates more drag, slowing down the crumpled paper's descent compared to when it's flat.
A flat piece of paper has a larger surface area, creating friction with the air, or more air resistance. There is more air surrounding the piece of paper, and this slows it down. A crumpled piece of paper has less surface area to create friction, meaning less air resistance. This causes it to fall faster.
Because when the sheet of paper is flat, it acts like a parachute, and collects much more air resistance. The balled-up piece of paper has much less surface area, so can collect much less air resistance, making it fall faster.
because it is more lighter than the crumpled one. and its density is much lighter.
Because there is less surface area on the crumbled piece of paper, there is less area upon which the force of friction (air resistance) may act. There is more surface area on the normal piece of paper, which allows friction to act over a greater area on the paper. More air resistance causes the flat piece to fall slower.
This is because the flat piece of paper has a greater surface area, thus creating more friction between the air and itself, (this is also known as air resistance). The crumpled ball however, has a smaller surface area, creating less air resistance. The shape is different, meaning that the amount of force it gets is also different.