1 / 11

Simple Machines

Simple Machines. Mrs. Wharton’s Science Class. Machines. Change the amount of force you exert or the distance over which you exert the force. The idea mechanical machine would have an efficiency of 100%. Mechanical Advantage.

rex
Download Presentation

Simple Machines

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Simple Machines Mrs. Wharton’s Science Class

  2. Machines • Change the amount of force you exert or the distance over which you exert the force. • The idea mechanical machine would have an efficiency of 100%

  3. Mechanical Advantage • The number of times a machine increases the force exerted on the machine.

  4. Simple Machines • Inclined Plane (ramp) • Wedge (ax, Incisor) • Screw (light bulb) • Lever ( see-saw, wheel barrel, body joints) • Pulley (window blinds, flag pole) • Wheel and Axel (cars, bicycles)

  5. Compound Machines • A combination of 2 or more simple machines. • Bicycle • Scissors

  6. Inclined Plane • A flat, slanted surface • You can determine the ideal mechanical advantage of an inclined plane by dividing the length of the incline by it’s height.

  7. Wedge • A device that is thick on one end and thin on the other. • You can determine the ideal mechanical advantage of a wedge by dividing the length of the wedge by it’s width.

  8. Lever • A rigid bar that is free to pivot, or rotate around a fixed point. • The fixed point the lever rotates around is called a fulcrum • The ideal mechanical advantage of a lever is determined by dividing the distance from the fulcrum to the input force by the distance from the fulcrum to the output force.

  9. Screw • Can be thought of an inclined plane wrapped around a central cylinder, forming a spiral. • The ideal mechanical advantage of a screw is the length around the threads divided by the length of the screw.

  10. Wheel and Axel • A simple machine made up of two circular objects that are fastened together and that rotate around a common axis. • You can find the ideal mechanical advantage by dividing the radius of the wheel by the radius of the axle.

  11. Pulley • Consists of a rope and cable that is wrapped around a grooved wheel. • A pulley that you attached to a structure is called an fixed pulley • If you are moving an object with a pulley you are using a movable pulley. • The ideal mechanical advantage of a pulley is equal to the number of sections of rope that support the object.

More Related