These two forces are very effective. These make a person feel very different. These affect the behavior of a person a lot.
the gravitational pull makes the object fall quicker. it doesn't matter about weith
Centripetal force is a force that makes a body follow a curved path: it is always directed orthogonal to the velocity of the body, toward the instantaneous center of curvature of the path.I linked my source.
The force that keeps an object in orbit around another object is gravity. Specifically, it is the gravitational pull between the two objects that keeps them moving in a curved path instead of flying off into space. This balance between the object's inertia and the gravitational force keeps it in orbit.
The angular velocity of the ferris wheel is 2π radians every 8 seconds, which is equivalent to 0.7854 radians per second. The centripetal acceleration is calculated using the formula a = rω^2, where r is the radius and ω is the angular velocity. Substituting the values, we get a = 12 m * (0.7854 rad/s)^2 ≈ 7.46 m/s^2.
TheCentripetal force is a force that makes things go in a circular motion, in example the Earth applying a gravitational force on the moon. So basically if you want to triple its magnitude, you need to triple the magnitude of that force depending on which force is it ( In the Earth-moon example the gravitational force). A force which makes a body go in a circular motion Centripetal force) always equals mv2/R when m is the mass of the body, v is its tangent velocity and R is the radius of the motion. So in the general case you should change one of these variables so the force will triple itself.
the gravitational pull makes the object fall quicker. it doesn't matter about weith
As the moon orbits the Earth, the force of gravity acting upon the moon provides the centripetal force required for circular motion.
A centripetal force is, by definition, a force that makes a body follow a curved path. So, yes, a centripetal force causes rotation about a point in space.
Centripetal force is a force that makes a body follow a curved path: it is always directed orthogonal to the velocity of the body, toward the instantaneous center of curvature of the path.I linked my source.
Gravitational acceleration affects objects inside a planet by pulling them towards the planet's center. This force causes objects to fall towards the ground when dropped and gives them weight. The strength of gravitational acceleration depends on the mass of the planet and the distance from its center.
The force that keeps an object in orbit around another object is gravity. Specifically, it is the gravitational pull between the two objects that keeps them moving in a curved path instead of flying off into space. This balance between the object's inertia and the gravitational force keeps it in orbit.
The revolutionary movement of the natural satellite such as moon around the earth makes it stable in its orbit. This is similar to the stay of earth around the sun. Scientifically speaking the gravitational force of attraction between the earth and moon becomes the necessary centripetal force to keep it stay in its orbit. This centripetal force will be along the line joining the moon and the earth. This centripetal will be balanced by the centrifugal which acts away from the earth. This centrifugal force comes into the scene due to the inertia of direction.
The angular velocity of the ferris wheel is 2π radians every 8 seconds, which is equivalent to 0.7854 radians per second. The centripetal acceleration is calculated using the formula a = rω^2, where r is the radius and ω is the angular velocity. Substituting the values, we get a = 12 m * (0.7854 rad/s)^2 ≈ 7.46 m/s^2.
The centripetal force acts towards the center of the circular path followed by the satellite, allowing it to maintain its orbit. In the case of a satellite orbiting Earth, the force of gravity provides the centripetal force required to keep the satellite in its orbit.
TheCentripetal force is a force that makes things go in a circular motion, in example the Earth applying a gravitational force on the moon. So basically if you want to triple its magnitude, you need to triple the magnitude of that force depending on which force is it ( In the Earth-moon example the gravitational force). A force which makes a body go in a circular motion Centripetal force) always equals mv2/R when m is the mass of the body, v is its tangent velocity and R is the radius of the motion. So in the general case you should change one of these variables so the force will triple itself.
Gravity is the force that makes the car move faster down the slope. As the car descends, gravity pulls it downhill, increasing its speed. The steeper the slope, the greater the acceleration due to gravity.
Centripetal force is a force that makes a body follow a curved path. An example of centripetal force is gravity making something in space orbit Earth. Mud flying in circles from a tire going down the road is centripetal force.