Mexican feather grass has a tendency to fall over because its long, delicate stems are not very strong and can easily bend or break under their own weight or in windy conditions.
In a vacuum, a feather and a piece of paper would fall at the same rate due to gravity. However, in Earth's atmosphere, the feather would fall more slowly due to air resistance.
A feather can fall more slowly than a marble in air due to differences in their size, shape, and air resistance. The greater surface area of a feather compared to a marble causes more air resistance, which slows down the feather's fall. A denser object like a marble will fall faster than a less dense object like a feather because it overcomes air resistance more effectively.
Air resistance or drag force is the force that made the feather fall slowly. As the feather falls through the air, the air molecules collide with it, creating resistance that slows down its descent.
both will fall at the same time
A rock falls faster than a feather due to differences in their mass and air resistance. Air resistance affects the feather more than the rock due to its larger surface area and lighter mass, causing the feather to fall more slowly.
it means that you have been so shocked that if someone tapped you with a feather you would fall down
For a feather and a ball to fall at the same rate in a vacuum, they need to experience the same gravitational force acting on them. This means there is no air resistance to slow down the feather, and they can both accelerate similarly due to gravity.
Without any feather falling, the default amount is 24 blocks and you will die. However, with feather falling boots you will be able to fall much further than that.
The structure of the feather makes it catch the air and fall more slowly than the coin. Refer to the related link for the Apollo 15 mission to the moon, which has no atmosphere, in which an astronaut drops a hammer and a feather at the same time.
they will all fall
a bird flew by
Yes, in a vacuum both a feather and a steel ball would fall simultaneously because there is no air resistance to impede their free fall. This means they would both fall at the same rate due to gravity, as described by Newton's laws of motion.