No. With no external force acting on an object,
it moves in a straight line at a constant speed.
The force that causes an object, like a ball, to move in a curved path is centripetal force. This force acts towards the center of the curve and is necessary to keep the object moving in a circular motion. Without centripetal force, the object would continue in a straight line tangential to the curve.
If a net force acts at an angle to the direction an object is moving, the object will follow a curved path. This is because the force causes both a change in the object's speed and its direction. The object will move in the direction of the net force, but its trajectory will be curved due to the combination of the force and the object's initial velocity.
The path of a body not acted on by a force is a path without acceleration, a straight line. A straight line can be a flat line zero velocity or a slant line constant velocity. It cannot be a curved line, acceleration, changing velocity.
Magnetic field lines are curved because they follow the direction of the magnetic force generated by magnets or moving charges. The curved nature of magnetic field lines is a visual representation of the force exerted by magnetic fields on charged particles, which causes them to move in a curved path around the magnetic field lines.
A centripetal force acts toward the center of the circular path, causing an object to move in a cycle. This force keeps the object moving in a curved path rather than continuing in a straight line.
Coriolis force
The force that causes an object, like a ball, to move in a curved path is centripetal force. This force acts towards the center of the curve and is necessary to keep the object moving in a circular motion. Without centripetal force, the object would continue in a straight line tangential to the curve.
When the force acts perpendicular to the direction of motion then it makes it to move along curved path When the force is opposite to motion then it could stop it
If a net force acts at an angle to the direction an object is moving, the object will follow a curved path. This is because the force causes both a change in the object's speed and its direction. The object will move in the direction of the net force, but its trajectory will be curved due to the combination of the force and the object's initial velocity.
Earth's rotation causes the water to move in a curve; this is a manifestation of The Coriolis force.
It's called Coriolis force.
It's called Coriolis force.
The path of a body not acted on by a force is a path without acceleration, a straight line. A straight line can be a flat line zero velocity or a slant line constant velocity. It cannot be a curved line, acceleration, changing velocity.
Magnetic field lines are curved because they follow the direction of the magnetic force generated by magnets or moving charges. The curved nature of magnetic field lines is a visual representation of the force exerted by magnetic fields on charged particles, which causes them to move in a curved path around the magnetic field lines.
Inertia - or the absence of any force making it change direction.
A centripetal force acts toward the center of the circular path, causing an object to move in a cycle. This force keeps the object moving in a curved path rather than continuing in a straight line.
centripetal force