7.11
질량 중심 프레임워크는 강체에 수행되는 작업을 쉽게 설명하는 데 도움이 됩니다. 강체의 내부 힘은 일을 하지 않으므로 무시할 수 있으며, 외부 힘은 일-에너지 정리에서 고려할 수 있습니다.
강체를 이동하기 위해 중력이 수행한 작업 또는 중력에 대항하여 강체를 이동하기…
스키를 타고 슬로프를 내려가는 사람을 생각해 보십시오. 스키의 마찰로 인한 힘이 얼음 위에서 무시할 수 있다고 가정하면 자유물체 다이어그램을 그릴 수 있습니다.
변위를 따른 중력의 구성 요소는 사람을 앞으로 이동시킵니다. 변위에 수직인 힘은 이동에서 아무런 역할도 하지 않으므로 수행된 작업에 기여하지 않습니다.
따라서 수행된 작업은 단순히 평행력 구성 요소에 변위를 곱
한 것입니다.이 문제를 해결하는 또 다른 방법은 구성 요소 대신 힘 벡터를 사용하는 것입니다.
여기서 힘과 변위 사이의 각도가 고려됩니다. done 작업에 대한 최종 표현식은 동일합니다.
그러나 스키어의 변위가 힘의 반대 방향에 있어 정지 상태에서 시작하고 끝나는 경우 수행된 작업은 음수입니다.
경사면의 각도가 0이면 힘은 변위에 수직이므로 사람에 대한 중력에 의해 수행되는 작업은 0이 됩니다.
View the full transcript and gain access to JoVE Core videos
Q1: Why do only force components parallel to displacement contribute to work on an inclined plane?
Forces perpendicular to displacement do not contribute to work because work depends on the component of force acting in the direction of motion. On an inclined plane, only the gravitational force component along the slope moves the object forward. The normal force, perpendicular to the plane, does no work regardless of the displacement distance.
Q2: How does the angle between force and displacement affect work calculation?
Work is calculated by multiplying the force magnitude by the displacement and the cosine of the angle between them. When the angle is zero, force and displacement align, maximizing work. When perpendicular (90 degrees), work becomes zero. On an inclined plane with zero slope angle, gravitational force becomes perpendicular to displacement, resulting in zero work.
Q3: When is work done by gravity negative on an inclined plane?
Work done by gravity is negative when displacement opposes the gravitational force direction, such as when an object moves up the slope against gravity. If the object starts and ends at rest while moving upward, negative work indicates energy is being stored or removed from the system, opposing gravity's natural downward pull.
Q4: What role does the center-of-mass framework play in calculating work on rigid bodies?
The center-of-mass framework simplifies work calculations for rigid bodies by allowing internal forces to be ignored, since they do no work. Only external forces like gravity need consideration. This approach applies equally to inclined planes, where only the gravity component along the plane contributes to work done on the body's center of mass.
Q5: Why is work done by gravity zero during horizontal motion?
During horizontal motion, gravitational force acts vertically downward while displacement occurs horizontally. Since force and displacement are perpendicular, their dot product is zero, resulting in zero work by gravity. Any change in kinetic energy during horizontal motion comes entirely from other forces like friction or applied forces, not gravity.
Q6: How do you calculate work done by gravity using the line integral method?
Work done by gravity is the line integral of gravitational force over the displacement path. The result is positive if gravity increases kinetic energy (object moving downward) and negative if work opposes gravity (object moving upward). On an inclined plane, only the gravity component parallel to the slope contributes to this line integral calculation.
Q7: What is the difference between using force components versus the angle method for work calculations?
Both methods yield identical results. The component method multiplies the parallel force component by displacement directly. The angle method multiplies total force magnitude by displacement by the cosine of the angle between them. On inclined planes, both approaches account for only the gravity component along the slope, producing the same work value.