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Kinetics of Particle Example in Cartesian Coordinate System Video Lecture | Civil Engineering Optional Notes for UPSC

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FAQs on Kinetics of Particle Example in Cartesian Coordinate System Video Lecture - Civil Engineering Optional Notes for UPSC

1. What is the equation for the kinetics of a particle in a Cartesian coordinate system?
Ans. The equation for the kinetics of a particle in a Cartesian coordinate system is given by Newton's second law, which states that the sum of the forces acting on the particle is equal to the mass of the particle multiplied by its acceleration.
2. How can the velocity and acceleration of a particle be calculated in a Cartesian coordinate system?
Ans. The velocity of a particle can be calculated by taking the derivative of the position vector with respect to time, while the acceleration can be calculated by taking the derivative of the velocity vector with respect to time.
3. What are the key concepts involved in understanding the kinetics of a particle in a Cartesian coordinate system?
Ans. Key concepts involved in understanding the kinetics of a particle in a Cartesian coordinate system include forces acting on the particle, Newton's second law, velocity, acceleration, and the relationship between position, velocity, and acceleration.
4. How does the mass of a particle affect its motion in a Cartesian coordinate system?
Ans. The mass of a particle affects its motion in a Cartesian coordinate system by influencing the acceleration of the particle according to Newton's second law. A larger mass will result in a smaller acceleration for a given force, and vice versa.
5. Can you provide an example of applying the kinetics of a particle in a Cartesian coordinate system to a real-life scenario?
Ans. An example of applying the kinetics of a particle in a Cartesian coordinate system to a real-life scenario is analyzing the motion of a car on a road. By considering the forces acting on the car, its mass, and the resulting acceleration, one can predict how the car will move along the road.
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