Radial forces act towards or away from the center of a circle, while tangential forces act perpendicular to the radial direction, causing rotation.
In physics, tangential forces act parallel to the surface of an object, causing it to rotate. Radial forces, on the other hand, act perpendicular to the surface, causing the object to move in a circular path.
Forces originate from interactions between objects, such as pushing, pulling, or gravitational attraction, in the context of physics.
In physics, attractive forces pull objects together, while repulsive forces push them apart. These forces determine how objects interact with each other and can affect the behavior of particles and objects in the universe.
In physics, dynamics deals with the forces that cause motion, while kinematics focuses on describing the motion itself without considering the forces involved.
In physics, conservative forces are those that do work that depends only on the initial and final positions of an object, such as gravity or spring forces. Non-conservative forces, on the other hand, do work that depends on the path taken by the object, like friction or air resistance.
In physics, tangential forces act parallel to the surface of an object, causing it to rotate. Radial forces, on the other hand, act perpendicular to the surface, causing the object to move in a circular path.
Tangential distance refers to the shortest distance between a point and a curve or surface along a path that is perpendicular to the radius at that point. In the context of circular motion, it can describe the distance traveled along the tangent line to the circle at a specific point. This concept is often used in physics and engineering to analyze motion and forces acting on objects in circular paths.
Forces originate from interactions between objects, such as pushing, pulling, or gravitational attraction, in the context of physics.
In physics, attractive forces pull objects together, while repulsive forces push them apart. These forces determine how objects interact with each other and can affect the behavior of particles and objects in the universe.
In physics, dynamics deals with the forces that cause motion, while kinematics focuses on describing the motion itself without considering the forces involved.
1- It has direction. 2- It has magnitude. 3- It is the sum of all forces( normal + tangential). net force = square root( normal force2 + tangential force2).
Computer science is the study of algorithms, programming, and software development, focusing on the design and use of computers. Physics, on the other hand, is the study of the natural world, including matter, energy, and the fundamental forces of the universe. The key difference between the two is that computer science deals with the digital world and information processing, while physics deals with the physical world and natural phenomena.
In physics, conservative forces are those that do work that depends only on the initial and final positions of an object, such as gravity or spring forces. Non-conservative forces, on the other hand, do work that depends on the path taken by the object, like friction or air resistance.
centrifugal force,gravitational force,gyroscopic effects,tangential forces, torque,shear forces
The forces are the electrostatic forces of attraction between the nucleus of one atom and the electrons of the other atom.
In physics, kinematics deals with the motion of objects without considering the forces causing the motion, while dynamics involves studying the forces that cause motion and how they affect the motion of objects.
When analyzing a velocity field with both radial and tangential components, it is important to consider factors such as the direction and magnitude of the velocity vectors, the relationship between the radial and tangential components, and how they affect the overall flow of the system. Additionally, understanding the physical properties of the system and any external forces acting on it can help in interpreting the behavior of the velocity field.