A continental plate demonstrates Newton's law of inertia by maintaining its state of motion unless acted upon by an external force. For instance, tectonic plates, including continental ones, move at a constant velocity across the Earth's mantle due to the forces exerted by mantle convection and gravity. When these plates encounter resistance or other forces, such as subduction or collision with another plate, they may change their motion or direction. This illustrates inertia, as the plates resist changes to their motion until influenced by significant external forces.
The asthenosphere is the region of the Earth that is soft and putty-like, located beneath the lithosphere. The asthenosphere allows for the movement of tectonic plates due to its semi-fluid state, which allows the plates to slide and move over it.
Plate tectonic is the state the outer portion of the earth crust composed rigid units called plates.
No they are not the same thing. Plate Tectonics is the study of mechanisms and the results of large-scale movement of the earth's crust. Tectonic Plates are large sections of the earth's crust that float on top of semi-molten rocks of the upper mantle.
The natural state of motion is to continue moving in a straight line at a constant speed unless acted upon by an external force. This concept is known as inertia and is described by Newton's First Law of Motion.
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The movement or action of the plate determines what type it is. When two plates collide, they are creating a convergent boundary. Therefore you could state that they are convergent (or colliding) tectonic plates.
A continental plate demonstrates Newton's law of inertia by maintaining its state of motion unless acted upon by an external force. For instance, tectonic plates, including continental ones, move at a constant velocity across the Earth's mantle due to the forces exerted by mantle convection and gravity. When these plates encounter resistance or other forces, such as subduction or collision with another plate, they may change their motion or direction. This illustrates inertia, as the plates resist changes to their motion until influenced by significant external forces.
The tectonic plates slide together, causing an earthquake to erupt across the southern part of the state.
A long section of tectonic plates under California means the State experiences small earthquakes every day.The tectonic plates under Mount Everest produced a 7.8 earthquake in Nepal in May 2015.Scientists know that as tectonic plates pass move by each other, it causes major upheaval underground which causes an earthquake.
Electrons
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An object in a state of equilibrium can be in motion because its velocity is constant (constant speed and direction). It can also be stationary if it is at rest, as long as the forces acting on it are balanced and there is no net force acting to change its state of motion.
Yes, the Earth's lithosphere is broken into large, rigid plates called tectonic plates that move slowly over the semi-fluid asthenosphere beneath them. The motion of these plates is primarily driven by heat and convection currents in the mantle, which cause the plates to either move apart, collide, or slide past each other, resulting in various tectonic activities like earthquakes, volcanic eruptions, and mountain-building.
Atoms are in constant motion due to thermal energy they possess. This energy causes atoms to vibrate and move around randomly. This constant motion is necessary for atoms to maintain their state of energy and interact with other atoms in their surroundings.
The asthenosphere is the region of the Earth that is soft and putty-like, located beneath the lithosphere. The asthenosphere allows for the movement of tectonic plates due to its semi-fluid state, which allows the plates to slide and move over it.
In a constant state of motion (which may actually be stationary).