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Chapter 9

Linear Momentum, Impulse and Collisions

선형 모멘텀
선형 모멘텀
The term momentum is used in various ways in everyday language, most of which are consistent with the precise scientific definition. Generally, momentum ...
힘과 모멘텀
힘과 모멘텀
Force and momentum are intimately related. Force acting over time can change momentum, and Newton's second law of motion can be stated in its most ...
충 동
충 동
According to Newton’s second law of motion, the rate of change of the momentum of an object is the net external force acting on it. The total change ...
임펄스-모멘텀 정리
임펄스-모멘텀 정리
The total change in the motion of an object is proportional to the total force vector acting on it and the time over which it acts. This product is called ...
Conservation of Momentum: 소개
Conservation of Momentum: 소개
The total momentum of a system consisting of N interacting objects is constant in time or is conserved. A system must meet two requirements for its ...
모멘텀 보존: 문제 해결
모멘텀 보존: 문제 해결
Solving problems using the conservation of momentum requires four basic steps: Identify a closed system, where the total mass is constant, and no net ...
충돌의 종류 - I
충돌의 종류 - I
When two objects come in direct contact with each other, it is called a collision. During a collision, two or more objects exert forces on each other in a ...
충돌의 유형 - II
충돌의 유형 - II
When two or more objects collide with each other, they can stick together to form one single composite object (after collision). The total mass of the ...
Elastic Collisions: 소개
Elastic Collisions: 소개
An elastic collision is one that conserves both internal kinetic energy and momentum. Internal kinetic energy is the sum of the kinetic energies of the ...
Elastic Collisions: 사례 연구
Elastic Collisions: 사례 연구
Elastic collision of a system demands conservation of both momentum and kinetic energy. To solve problems involving one-dimensional elastic collisions ...
다차원의 충돌: 소개
다차원의 충돌: 소개
It is far more common for collisions to occur in two dimensions; that is, the initial velocity vectors are neither parallel nor antiparallel to each ...
다차원의 충돌: 문제 해결
다차원의 충돌: 문제 해결
In multiple dimensions, the conservation of momentum applies in each direction independently. Hence, to solve collisions in multiple dimensions, we should ...
질량 중심: 소개
질량 중심: 소개
Any object that obeys Newton's second law of motion is made up of a large number of infinitesimally small particles. Objects in motion can be as ...
질량 중심의 중요성
질량 중심의 중요성
The center of mass of an object is defined as the mass-weighted average position of all the particles that comprise the object. The significance of the ...
확장된 물체에 대한 중력 위치 에너지
확장된 물체에 대한 중력 위치 에너지
Consider a system comprising several point masses. The coordinates of the center of mass for this system can be expressed as the summation of the product ...
빈 공간에서의 로켓 추진 - I
빈 공간에서의 로켓 추진 - I
The driving force for the motion of any vehicle is friction, but in the case of rocket propulsion in space, the friction force is not present. The motion ...
빈 공간에서의 로켓 추진 - II
빈 공간에서의 로켓 추진 - II
The motion of a rocket is governed by the conservation of momentum principle. A rocket's momentum changes by the same amount (with the opposite sign) ...
중력장에서의 로켓 추진 - I
중력장에서의 로켓 추진 - I
Rockets range in size from small fireworks that ordinary people use to the enormous Saturn V that once propelled massive payloads toward the Moon. The ...
중력장에서의 로켓 추진 - II
중력장에서의 로켓 추진 - II
A rocket's velocity in the presence of a gravitational field is decreased by the amount of force exerted by Earth's gravitational field, which ...
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