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Classical Mechanics is a branch of physics that studies the motion of objects and the forces acting upon them. It is based on the laws of motion developed by Sir Isaac Newton in the 17th century. Classical Mechanics helps us understand how objects move and interact with each other in the world around us. By applying mathematical equations and principles, scientists can predict the behavior of objects in motion. This field of study is essential for understanding the physical world and is the foundation for many other branches of physics.
Scrambled Words : Classical Mechanics
{"stat":1,"data":{"id":"484","deckName":"Classical Mechanics","vocabcards":1,"cards":[{"id":6572,"front":"Kinematics","back":"Kinematics is the branch of classical mechanics that describes the motion of objects without considering the forces causing the motion."},{"id":6573,"front":"Dynamics","back":"Dynamics in classical mechanics is the study of how forces and motion interact to describe the behavior of physical systems."},{"id":6574,"front":"Force","back":"Force is a push or pull acting on an object, causing it to accelerate according to Newton's laws of motion."},{"id":6575,"front":"Mass","back":"Mass is a measure of the amount of matter in an object, determining its resistance to acceleration in classical mechanics."},{"id":6576,"front":"Acceleration","back":"Acceleration is the rate of change of velocity over time; it measures how quickly an object's speed or direction changes."},{"id":6577,"front":"Velocity","back":"Velocity is a vector quantity that describes the rate at which an object's position changes with respect to time."},{"id":6578,"front":"Energy","back":"Energy is the capacity of a physical system to perform work, measured in joules, and can exist in various forms."},{"id":6579,"front":"Work","back":"In Classical Mechanics, work is defined as the transfer of energy caused by the application of a force over a distance."},{"id":6580,"front":"Power","back":"Power in classical mechanics is the rate at which work is done or energy is transferred, typically measured in watts."},{"id":6581,"front":"Friction","back":"Friction is a force that opposes the relative motion or tendency of such motion between two surfaces in contact."},{"id":6582,"front":"Inertia","back":"Inertia is the tendency of an object to resist changes in its motion, whether it is at rest or moving."},{"id":6583,"front":"Momentum","back":"Momentum is a vector quantity in classical mechanics that describes the motion of an object and is calculated as mass times velocity."},{"id":6584,"front":"Impulse","back":"Impulse is the change in momentum of an object over a short period of time, calculated as the product of force and time."},{"id":6585,"front":"Torque","back":"Torque is a measure of the rotational force acting on an object, calculated as the product of force and distance."},{"id":6586,"front":"Equilibrium","back":"Equilibrium refers to a state in which the net force acting on an object is zero, resulting in no acceleration."},{"id":6587,"front":"Gravity","back":"Gravity is the natural force that pulls objects with mass towards each other, causing them to accelerate towards each other."},{"id":6588,"front":"Projectile","back":"A projectile is an object that is launched into the air and moves under the influence of gravity alone."},{"id":6589,"front":"Rotation","back":"Rotation refers to the circular movement of an object around an axis, resulting in a change in orientation or position."},{"id":6590,"front":"Circular motion","back":"Circular motion is the movement of an object in a circular path around a fixed point, with constant speed."},{"id":6591,"front":"Conservation laws","back":"Conservation laws in classical mechanics are principles that state certain physical quantities remain constant in isolated systems."}]}}
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quick facts
Classical mechanics is a branch of physics that studies the motion of objects.
One of the key principles of classical mechanics is Newton’s laws of motion.
Classical mechanics can be used to predict the trajectory of objects, such as projectiles.
Classical mechanics was developed by scientists like Galileo and Newton in the 17th century.
Classical mechanics is still used today to design machines, vehicles, and structures.