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To find the torque of a gear, you can use the formula: Torque Force x Distance. First, determine the force applied to the gear. Then, measure the distance from the point where the force is applied to the center of the gear. Multiply the force by the distance to calculate the torque.
The gear ratio in a mechanical system affects torque by changing the relationship between the input and output speeds of the system. A higher gear ratio increases torque at the expense of speed, while a lower gear ratio increases speed at the expense of torque.
My car has lots of torque in first gear.
Using low gear does not make you go faster. Low gear is typically used for situations where more power or torque is needed, such as going up steep hills or towing heavy loads. In general, using a higher gear will allow you to go faster because it provides more speed for the same amount of engine power.
A gear is neither a lever nor an inclined plane. Gears are mechanical components with teeth that mesh with each other to transmit motion and power. They are used to change the speed, torque, and direction of rotation in machines and other systems.
11.12:1
The driver gear has the input torque, and the driven gear has the output torque.
The driver gear has the input torque, and the driven gear has the output torque.
The power output of a motor can be changed by the use of gears. Gears can be used to increase torque by reducing the speed of the output shaft by placing a large gear on the output shaft, coupled to a smaller gear. Conversely, by using a small gear on the output shaft, coupled to a larger gear, the speed can be increased with a reduction in torque.
To find the torque of a gear, you can use the formula: Torque Force x Distance. First, determine the force applied to the gear. Then, measure the distance from the point where the force is applied to the center of the gear. Multiply the force by the distance to calculate the torque.
from power= torque*angular speed u can calculate torque and from torque u can find the force if the radius is known.
The gear ratio in a mechanical system affects torque by changing the relationship between the input and output speeds of the system. A higher gear ratio increases torque at the expense of speed, while a lower gear ratio increases speed at the expense of torque.
It would depend on the differential gear ratio and engine horse power/torque.
It depends on what you need - if you want lots of speed no power on the bottom end you go with the high ratio - if you want lots of torque on take off and lots of pulling power you take the low gear ratio.
My car has lots of torque in first gear.
The main drive gear in a transmission, often referred to as the output gear, is the gear that transmits power from the transmission to the vehicle's driveshaft. It is crucial for converting the engine's rotational motion into usable torque for the wheels. The main drive gear typically works in conjunction with other gears in the transmission to provide different gear ratios, allowing for varied speed and torque outputs depending on driving conditions.
A set of gears can increase torque through a mechanical advantage created by gear ratios. When a smaller gear (the drive gear) turns a larger gear (the driven gear), the larger gear rotates more slowly but with greater force, effectively multiplying the torque. This principle is utilized in various applications, such as vehicles, where lower gears provide higher torque for starting and climbing. The trade-off is that while torque increases, rotational speed decreases.