Crumpled paper can reflect light to some extent, depending on its surface texture and the angle of incident light. However, because of its uneven and irregular surface, crumpled paper is more likely to scatter light in many different directions rather than reflect it sharply like a smooth and flat surface would.
In a vacuum, both a flat sheet of paper and a crumpled paper would accelerate at the same rate due to gravity. However, air resistance may affect the acceleration of a crumpled paper more than a flat sheet due to differences in surface area and shape, causing the crumpled paper to fall slower.
The crumpled paper has more air resistance because it has a larger surface area compared to the flat paper. The irregular shape of the crumpled paper causes more air to be trapped and create resistance as it moves through the air.
No, a paper cup does not reflect light like a shiny surface would. Instead, it absorbs and scatters light due to its rough and absorbent surface.
A sheet of paper sinks more slowly than a crumpled paper because the crumpled paper contains more air pockets, providing buoyancy. As a result, the crumpled paper has a lower overall density than the flat sheet of paper, causing it to sink more slowly.
A crumpled paper ball has a smaller surface area compared to a flat sheet of paper, which increases air resistance and slows down its fall. The crumpled ball also has more internal air resistance, which further hinders its fall speed.
She found a crumpled piece of paper in her pocket.
Wood, Plastic,Cotton,Paper and Fibre are 5 materials that don't reflect light.
In a vacuum, both a flat sheet of paper and a crumpled paper would accelerate at the same rate due to gravity. However, air resistance may affect the acceleration of a crumpled paper more than a flat sheet due to differences in surface area and shape, causing the crumpled paper to fall slower.
You can use the word crumpled to describe something that has been crushed or wrinkled into a disordered shape, often associated with paper or fabric. For example, "He crumpled the paper into a ball and threw it in the trash."
The crumpled paper has more air resistance because it has a larger surface area compared to the flat paper. The irregular shape of the crumpled paper causes more air to be trapped and create resistance as it moves through the air.
No, a paper cup does not reflect light like a shiny surface would. Instead, it absorbs and scatters light due to its rough and absorbent surface.
A sheet of paper sinks more slowly than a crumpled paper because the crumpled paper contains more air pockets, providing buoyancy. As a result, the crumpled paper has a lower overall density than the flat sheet of paper, causing it to sink more slowly.
A crumpled paper ball has a smaller surface area compared to a flat sheet of paper, which increases air resistance and slows down its fall. The crumpled ball also has more internal air resistance, which further hinders its fall speed.
Yes, crumpled paper burns faster than flat paper because the crumpled paper has more surface area exposed to the flames, allowing for faster combustion. The increased surface area allows for better airflow and more efficient burning.
crumbled
A crumpled piece of paper falls faster than a flat piece due to air resistance. The crumpled paper has a smaller surface area exposed to air compared to the flat paper, reducing the force of air resistance acting on it. This allows the crumpled paper to accelerate faster towards the ground.
Crumpled paper falls faster than straight paper due to its increased aerodynamic drag caused by its irregular shape. The turbulent airflow around the crumpled paper creates more resistance, resulting in a faster descent compared to the smoother, more streamlined straight paper.