When an object is placed in a uniform electric field with straight, parallel, and uniformly spaced field lines, it will experience a constant force in the direction of the field lines. This force will cause the object to move in a straight line in the direction of the field lines, with a constant acceleration.
The electric field around a very long uniformly charged cylinder is uniform and points radially outward from the cylinder.
The work done in rotating an electric dipole in a uniform electric field from parallel position to anti-parallel position is zero. This is because the torque applied to rotate the dipole is perpendicular to the direction of the electric field, so the work done is zero.
The electric potential inside a parallel-plate capacitor is constant and uniform between the plates.
In a uniform electric field with the same strength at all points, the electric field lines are straight, parallel, and evenly spaced. This indicates that the electric field strength is constant.
yes, acceleration is constant in uniform circular motion
The electric field around a very long uniformly charged cylinder is uniform and points radially outward from the cylinder.
The work done in rotating an electric dipole in a uniform electric field from parallel position to anti-parallel position is zero. This is because the torque applied to rotate the dipole is perpendicular to the direction of the electric field, so the work done is zero.
The electric potential inside a parallel-plate capacitor is constant and uniform between the plates.
In a uniform electric field with the same strength at all points, the electric field lines are straight, parallel, and evenly spaced. This indicates that the electric field strength is constant.
yes, acceleration is constant in uniform circular motion
All of the lines, in the field are uniformly spaced, because the fartherapartthe lines are, the weaker the field is, but if the field is the same all around, then the lines are also the same, all around the field.
level, straight, flat, smooth, true, steady, uniform, parallel
In uniform motion, object travel at fixed and constant speed and uniformly accelerated motion the speed of the object increases uniformly.
A uniform electric field exists between parallel plates of equal but opposite charges.
Motion implies momentum, which implies velocity. Linear implies a straight line. Accelerating implies changing velocity. And uniform implies constancy. So, when an object moves in a straight line and accelerates at a constant rate, you have uniformly accelerating linear motion.
The velocity-time graph for uniform retardation is a straight line with a negative slope. The velocity decreases uniformly over time until it reaches zero. The area under the graph represents the displacement of the object.
Because it's worn uniformly by all personnel in the Army.