Depends on various factors:
The best parachute shape for ensuring a safe and controlled descent is a round parachute.
Yes, the shape and size of a parachute can affect its flight and landing. A larger parachute will create more drag, slowing down the descent. The shape of the parachute can also impact how stable it is during flight and how smoothly it lands.
Yes, the size of a parachute does affect how long it will float in the air. A larger parachute with more surface area will create more drag, slowing the descent and allowing it to float in the air longer compared to a smaller parachute.
The size of the parachute affects air resistance because a larger parachute will have more surface area interacting with the air, creating more drag. This drag helps to slow down the descent of the object attached to the parachute. Conversely, a smaller parachute will generate less air resistance and may result in a faster descent.
A larger parachute creates more air resistance due to its increased surface area, which helps to slow down the descent. This is because the drag force acting on the parachute is proportional to its size. Additionally, a larger parachute can provide more stability and control during descent.
Yes! I would not want to jump with a miniaturized parachute...
The best parachute shape for ensuring a safe and controlled descent is a round parachute.
Yes, the shape and size of a parachute can affect its flight and landing. A larger parachute will create more drag, slowing down the descent. The shape of the parachute can also impact how stable it is during flight and how smoothly it lands.
Yes, the size of a parachute does affect how long it will float in the air. A larger parachute with more surface area will create more drag, slowing the descent and allowing it to float in the air longer compared to a smaller parachute.
For a middle school project, you should design a parachute that is the right size for a small action figure. You can make the parachute out of an old pair of parachute pants.
The size of the parachute affects air resistance because a larger parachute will have more surface area interacting with the air, creating more drag. This drag helps to slow down the descent of the object attached to the parachute. Conversely, a smaller parachute will generate less air resistance and may result in a faster descent.
A larger parachute creates more air resistance due to its increased surface area, which helps to slow down the descent. This is because the drag force acting on the parachute is proportional to its size. Additionally, a larger parachute can provide more stability and control during descent.
The weight to material ratio for a parachute depends on various factors such as the size of the parachute, the weight of the payload, and the desired descent rate. In general, a common ratio is 5:1, meaning the parachute should be able to support 5 times the weight of the payload. However, it is best to consult a professional or refer to specific guidelines for more accurate recommendations.
The weight of a parachute can vary depending on its size and design. On average, a parachute used for skydiving typically weighs between 20-30 pounds.
cross sectional area for air resistance is greater as you increase the parachute size.
The larger the size of the parachute the more air resistance is caused because its larger surface traps more air. Becuase there is more air resistance the larger the parachute the slower it travels to the ground. The smaller the parachute the faster it falls to the ground for the opposite reason.
A larger parachute will create more air resistance, slowing down the descent and leading to a softer landing. A smaller parachute will fall faster and may result in a rougher landing due to the increased speed. The size of the parachute should be chosen based on the weight of the object being descended and the desired landing conditions.