shearing
False. Shearing results when forces within the Earth are applied parallel to each other in opposite directions causing rocks to slide past each other horizontally.
No, shearing results when forces within the earth are applied in opposite horizontal directions parallel to a given surface. This causes the surface to shift or deform without any vertical movement.
If forces are equal, it means that they have the same magnitude but opposite directions. This results in a state of equilibrium, where there is no net force acting on the object.
If the forces on an object are balanced, it means that the size and direction of the forces are equal and opposite. This results in no acceleration of the object, and it remains in a state of equilibrium.
When two forces of equal magnitude act in opposite directions on an object, it is called balanced forces. This results in no change in the object's motion.
a-plus compression
False. Shearing results when forces within the Earth are applied parallel to each other in opposite directions causing rocks to slide past each other horizontally.
a-plus compression
Shearing in the Earth's crust occurs when forces cause rocks to move horizontally in opposite directions along a fault line. This movement results in a strain that generates earthquakes as the rocks rupture along the fault. Shearing is a type of stress that can lead to faulting and seismic activity.
Shear forces push on rocks from different directions but not opposite directions, causing them to slide past each other horizontally. This can lead to rock formations such as faults or folds in the Earth's crust.
Tension
Tension
No, shearing results when forces within the earth are applied in opposite horizontal directions parallel to a given surface. This causes the surface to shift or deform without any vertical movement.
If forces are equal, it means that they have the same magnitude but opposite directions. This results in a state of equilibrium, where there is no net force acting on the object.
Balanced forces
If the forces on an object are balanced, it means that the size and direction of the forces are equal and opposite. This results in no acceleration of the object, and it remains in a state of equilibrium.
When two forces of equal magnitude act in opposite directions on an object, it is called balanced forces. This results in no change in the object's motion.