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An upward mountain is a term used to describe a mountainous ascent, where the terrain inclines in an upward direction as one climbs higher. It refers to the physical act of climbing a mountain upwards.
The main forces acting on a rock at rest in your hand are gravity pulling the rock downward and the normal force exerted by your hand pushing the rock upward. These forces are balanced, resulting in the rock staying at rest in your hand.
An upfold in rock layers is a type of geological structure where the rock layers are bent upwards into a convex shape, like an arch. This can occur due to tectonic forces pushing the layers together, causing them to fold upwards. Upfolds are common features in mountainous regions where there is active tectonic activity.
Remember Newton's Second Law! If the object is not accelerating, then of course they are balanced.The main forces are: 1) gravity pulling downward, the fluid in which it is floating pushing upward.
1). gravitational attraction between you and the earth 2). upward "normal" force exerted by the floor on the bottom of your feet These are the same forces that act on you while you're standing on anything, whether it's moving or not.
The process is called mountain building or orogenesis. It occurs when tectonic plates collide, causing intense pressure on the Earth's crust. This pressure pushes the layers of rock together and forces them to move upward, forming mountain ranges over millions of years.
3 forces gravity drag lift
An upward mountain is a term used to describe a mountainous ascent, where the terrain inclines in an upward direction as one climbs higher. It refers to the physical act of climbing a mountain upwards.
After your finger stops pushing, there are two forces acting on the coin: gravity pulling it downward and the force of the table or surface pushing upward to support the coin and prevent it from falling.
The main forces acting on a rock at rest in your hand are gravity pulling the rock downward and the normal force exerted by your hand pushing the rock upward. These forces are balanced, resulting in the rock staying at rest in your hand.
There are several forces acting on a still car: gravity pulling it downward, normal force pushing it upward, and frictional forces opposing motion on the ground.
Active volcanoes can often indicate the presence of a mountain range due to the geologic processes that create both features. Volcanoes are formed where tectonic plates meet and the mountain ranges can be the result of these same tectonic forces pushing the Earth's crust upward. The presence of active volcanoes in a mountain range suggests ongoing tectonic activity in the area.
The forces acting on a pram are typically gravity pulling it downward and normal force pushing it upward, as well as frictional forces when it's in contact with the ground. Additionally, there may be external forces from pushing or pulling the pram.
When plasticine is floating in water, the forces acting on it are gravity pulling it downward and buoyancy pushing it upward. The buoyant force is equal to the weight of the water displaced by the plasticine, keeping it afloat.
The answer would be upward
If there is no vertical motion, then no work is done by any vertical forces.
yes because when two plants convege , compression forces rocks upward to make mountians