The answer is B. The theory of isostatic equilibrium is used to explain the vertical height of a particular point on the earth such as the Himalayas. This theory is very similar to the principle of buoyancy. The mantle, in this case, is the liquid being displaced by the crust above. To accommodate great pressures such as those exerted by the Himalayas, the mantle distributes the force by height adjustments.
<span>Thunderstorms are the smallest storms, that can range from several km to over 50 km diameter. They can exist in isolation or as organized clusters often associated with mid-lat cyclones and hurricanes.
</span>Thunderstorms take place in high dew points, associated with maritime tropical air masses, provide favorable conditions for the formation of <span>thunderstorms.</span>
Any fossil fuel like tar, gas, etc
Based on the image shown and attached, assuming there is no friction between the floor and the ground, "<u>these forces will cause the box to move to the left."</u>
The image shows that the highest force, 60N, is on the right, pushing the load to the left.
The force on the left is 40N lower than the force on the right.
The force exerted on the object's body downward is 29N, and it is lesser than the force on the right pushing the load to the left.
Hence, in this case, it is concluded that the correct answer is option A. "<u>The forces will cause the box to move to the left."</u>
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