A motor is a machine that can help move a resistance faster by converting electrical energy into mechanical energy. Electric motors, for example, can provide the power needed to overcome resistance and drive loads at higher speeds.
The ratio of resistance force to effort force is known as mechanical advantage. It is calculated by dividing the resistance force by the effort force. A mechanical advantage greater than 1 indicates that the machine makes work easier by increasing the force applied, while a mechanical advantage less than 1 means that the machine increases the distance the object is moved.
An airplane can move faster by increasing the power from its engines, adjusting its angle of attack to reduce air resistance, and by flying at a higher altitude where the air is thinner and provides less drag. Upgrading to more aerodynamic designs and reducing the weight of the aircraft can also help it move faster.
No, drag actually slows the object down but thrust makes it go faster.
Friction in a machine can cause wear and tear on moving parts, leading to decreased efficiency and potentially causing overheating. It can also create resistance that affects the overall performance of the machine by reducing its speed or increasing the amount of energy required to operate it. Proper lubrication and maintenance can help reduce the negative effects of friction on a machine.
Bicycle gears work by changing the ratio of the rotations between the pedals and the wheels. By shifting gears, riders can adjust their speed and pedal resistance. Switching to a higher gear makes it harder to pedal but allows for faster speeds, while switching to a lower gear makes it easier to pedal but reduces speed.
the smaller they are the less resistance to water and the faster they move.
it makes our work faster,easier and better
direct selection possible
Because good aerodynamics makes them go faster, which lets their riders win more races. Good aerodynamics makes it possible for the rider to go faster. The faster the rider can get, the better his chances of winning the race.
This is a multipurpose machine that makes copies as well as is a fax machine. Depending upon the model it is possible it does other things as well. There are quite a few that also can be used as printers.
Same. Gravity makes all things accelerate towards the ground at the same speed. It's possible that the plate could be slowed by air resistance slightly, kinda like a parachute effect, but I wouldn't bet money on it. It would flip on its side if dropped from height to take the path of least resistance.
It makes it convenient and faster for the consumer to switch up the resistance on their workout so they are more likely to get a better workout.
what you call a machine that makes clothes is a sewing machine.
Soloflex makes a barbell and freebody machine that aids in making weightlifting at home easier. They also sell various straps and weights that work to add resistance to the basic machine.
The ratio of resistance force to effort force is known as mechanical advantage. It is calculated by dividing the resistance force by the effort force. A mechanical advantage greater than 1 indicates that the machine makes work easier by increasing the force applied, while a mechanical advantage less than 1 means that the machine increases the distance the object is moved.
A non-deterministic Turing machine can explore multiple paths simultaneously, potentially leading to faster computation for certain problems. This makes it more powerful than a deterministic Turing machine in terms of computational speed. However, the non-deterministic machine's complexity is higher due to the need to consider all possible paths, which can make it harder to analyze and understand its behavior.
An airplane can move faster by increasing the power from its engines, adjusting its angle of attack to reduce air resistance, and by flying at a higher altitude where the air is thinner and provides less drag. Upgrading to more aerodynamic designs and reducing the weight of the aircraft can also help it move faster.