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  1. Dec 11, 2020 · What is Spring Force. When a metal spring is stretched or compressed, it is displaced from its equilibrium position. As a result, it experiences a restoring force that tends to retract the spring back to its original position. This force is called the spring force.

  2. SPRING FORCE PHYSICS WHY THIS MATTERS: It turns out that spring force is not a constant force — it depends on the amount that an object stretches or compresses. This relationship is described by Hooke’s Law: F s = kx. The spring force (F s) is equal to the distance stretched or compressed (x) multiplied by a spring constant (k).

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  4. -(other examples that the kids may give) However, not all springs are used for any type of job or use. Depending on the type of material used, as well as the size, the spring can be pushed to a different size and/or shape. The machine or device that the spring is attached to may need to move a large distance or a small distance in

  5. Mar 12, 2024 · These forces remove mechanical energy from the system, gradually reducing the motion until the ruler comes to rest. The simplest oscillations occur when the restoring force is directly proportional to displacement. This is called Hooke’s law force, or spring force: \[F=-k x. onumber \]

  6. Monthly. Yearly. Select amount. What is Hooke's Law? Google Classroom. Learn about elasticity and how to determine the force exerted by a spring. What is a spring? A spring is an object that can be deformed by a force and then return to its original shape after the force is removed.

  7. A force is a push or pull that acts upon an object as a result of its interaction with other objects. Two Broad Categories of Forces: • Contact Forces: Normal Force, Tension Force, Friction Force, Spring Force, Air Resistance Force, Applied Force. • Field Forces: Gravity, electrical, magnetic.

  8. By definition, this is the weight of the object. All objects upon earth experience a force of gravity that is directed "downward" towards the center of the earth. The force of gravity on earth is always equal to the weight of the object as found by the equation: Fgrav = m • g where g = 9.8 N/kg (on Earth)

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