Physics-
General
Easy
Question
A light smooth inextensible string connected with two identical particles each of mass m, passes through a light ring R. If a force F pulls ring, the relative acceleration between the particles has magnitude :
-
-
-
- zero
The correct answer is:
Related Questions to study
physics-
Two light strings connect three particles of masses and . If moves with an acceleration a as shown in the figure, the ratio of tension in the strings 1 and 2 is
Two light strings connect three particles of masses and . If moves with an acceleration a as shown in the figure, the ratio of tension in the strings 1 and 2 is
physics-General
physics-
Two forces and act at the ends of a massless string opposite to each other. Then
Two forces and act at the ends of a massless string opposite to each other. Then
physics-General
physics-
What is the relation between velocities of points A and B in the given figure.
What is the relation between velocities of points A and B in the given figure.
physics-General
physics-
What is the relation between velocities of points A and B in the given figure.
What is the relation between velocities of points A and B in the given figure.
physics-General
physics-
In the figure acceleration of bodies A, B and C are shown with directions. Values b and c are w.r.t ground whereas a is acceleration of block A w.r.t wedge C. Acceleration of block A w.r.t ground is
In the figure acceleration of bodies A, B and C are shown with directions. Values b and c are w.r.t ground whereas a is acceleration of block A w.r.t wedge C. Acceleration of block A w.r.t ground is
physics-General
physics-
What is the relation between speeds of points A and B in the given figure.
What is the relation between speeds of points A and B in the given figure.
physics-General
physics-
What is the relation between velocities of points A and B in the given figure.
What is the relation between velocities of points A and B in the given figure.
physics-General
physics-
What is the relation between speeds of points A and B in the given figure.
What is the relation between speeds of points A and B in the given figure.
physics-General
physics-
Four rods each of length 1 have been hinged to form a rhombus. Vertex A is fixed to rigid support vertex C is being moved along the x-axis with a constant velocity as shown in the figure. The rate at which vertex B is approaching the x-axis at the moment the rhombus is in the form of a square is
Four rods each of length 1 have been hinged to form a rhombus. Vertex A is fixed to rigid support vertex C is being moved along the x-axis with a constant velocity as shown in the figure. The rate at which vertex B is approaching the x-axis at the moment the rhombus is in the form of a square is
physics-General
physics-
What is the relation between velocities of points A and B in the given figure.
What is the relation between velocities of points A and B in the given figure.
physics-General
physics-
What is the relation between speeds of points A and B in the given figure.
What is the relation between speeds of points A and B in the given figure.
physics-General
physics-
What is the relation between speeds of points A and B in the given figure.
What is the relation between speeds of points A and B in the given figure.
physics-General
physics-
What is the relation between speeds of points A and B in the given figure.
What is the relation between speeds of points A and B in the given figure.
physics-General
physics-
In the arrangement shown in the figure, the acceleration of the mass is, (Ignore friction)
In the arrangement shown in the figure, the acceleration of the mass is, (Ignore friction)
physics-General
physics-
A man of mass 60 kg is standing on a weighing machine kept in a box of mass 30 kg as shown in the diagram. If the man manages to keep the box stationary the reading in the weighing machine is
A man of mass 60 kg is standing on a weighing machine kept in a box of mass 30 kg as shown in the diagram. If the man manages to keep the box stationary the reading in the weighing machine is
physics-General