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During motion in a vertical circle, the force of gravity (weight of the object) is in the same direction as the motion for half the time and in the opposite direction for the rest.For a body moving in a horizontal circle, gravity is acting orthogonally to the motion at all times.During motion in a vertical circle, the force of gravity (weight of the object) is in the same direction as the motion for half the time and in the opposite direction for the rest.For a body moving in a horizontal circle, gravity is acting orthogonally to the motion at all times.During motion in a vertical circle, the force of gravity (weight of the object) is in the same direction as the motion for half the time and in the opposite direction for the rest.For a body moving in a horizontal circle, gravity is acting orthogonally to the motion at all times.During motion in a vertical circle, the force of gravity (weight of the object) is in the same direction as the motion for half the time and in the opposite direction for the rest.For a body moving in a horizontal circle, gravity is acting orthogonally to the motion at all times.
A static shape is a shape that is stable and still. It is the opposite of a dynamic shape which is an active shape that is moving.
the answer is translation, i had to know the answer to that question for a worksheet
Oh honey, sounds like you're trying to get deep on me! If all truth is parallel, then that means different truths can exist at the same time without intersecting. It's like saying two parallel lines never meet - they just do their own thing and keep it moving.
A set square is used in geometry to draw parallel lines. It is also used to make sure that angles are drawn correctly. There are grooves in the set square where a pencil can be inserted to draw a line. There is also a hinge that allows for moving the two pieces of the set square to the proper angle before drawing.
always current flow from the opposite direction of electron
acceleration in a direction that is not parallel to the direction you are moving
acceleration in a direction that is not parallel to the direction you are moving
They move in opposite directions when in a magnetic field because they have opposite charges. The force on a particle depends on its charge -- make the charge completely opposite, and the force on it will be completely opposite. Momentum is conserved when they move in opposite direction (that is, in their center of mass frame) because their respective masses are identical. One electron mass moving in one direction plus one electron mass moving in the opposite direction means a total momentum of zero. The system begins with zero momentum and ends that way.
The force on the electron would be perpendicular to both the direction of its motion and the current flow in the wire. This is described by the right-hand rule for magnetic fields, where the force would point in a specific direction based on the orientations of the current and the electron's motion.
Parallel to the surface of the slope and opposite to the movement of an object on the slope. Parallel to the surface of the slope and up-slope, in the case of an object resting in place on the slope.
If an electron moves in the direction of an electric field, it will experience an acceleration in the same direction as the field. This will cause the electron's motion to speed up. If the electron is already moving with a velocity in the direction of the electric field, it will continue to move with a constant velocity.
A force would have to be applied in the opposite direction to stop a moving ball. This force would act against the ball's motion, causing it to decelerate and eventually come to a stop.
If velocity is zero and acceleration is negative, the object will start moving in the direction opposite to its previous motion. It will decelerate and eventually come to a stop before moving in the opposite direction.
Traffic, a conveyor belt, a river current, and a moving walkway can proceed in the opposite direction.
what is the direction of motion of current carrying wire when electron is moving from east to west
The direction of current due to flow of electrons is opposite to the direction of conventional current. This is because electrons have a negative charge, so when they flow in a wire, they are actually moving in the opposite direction to the current flow defined by convention.