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DispMagUnit |
The SI unit for the magnitude of the displacement vector is the meter, m. |
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DispMagUnit (Copy) |
The SI unit for the magnitude of the displacement vector is the meter, m. |
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DispMagUnit (Copy) (Copy) |
The SI unit for the magnitude of the displacement vector is the meter, m. |
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DispMagUnit (Copy) (Copy) (Copy) |
The SI unit for the magnitude of the displacement vector is the meter, m. |
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DispMagUnit (Copy) (Copy) (Copy) |
The SI unit for the magnitude of the displacement vector is the meter, m. |
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Distance |
The distance between two points in physical space is the length of a straight line between them. The SI unit for distance is the meter, $\mathrm{m}$. |
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Distance (Copy) |
The distance between two points in physical space is the length of a straight line between them. The SI unit for distance is the meter, $\mathrm{m}$. |
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Distance (Copy) |
The distance between two points in physical space is the length of a straight line between them. The SI unit for distance is the meter, $\mathrm{m}$. |
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Distance (Copy) (Copy) |
The distance between two points in physical space is the length of a straight line between them. The SI unit for distance is the meter, $\mathrm{m}$. |
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DistanceTraveled |
The distance traveled is the length of a specific path between two points. The SI unit for distance traveled is the meter, $\mathrm{m}$. |
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DistanceTraveled (Copy) |
The distance traveled is the length of a specific path between two points. The SI unit for distance traveled is the meter, $\mathrm{m}$. |
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DistanceTraveled (Copy) |
The distance traveled is the length of a specific path between two points. The SI unit for distance traveled is the meter, $\mathrm{m}$. |
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DistanceTraveled (Copy) |
The distance traveled is the length of a specific path between two points. The SI unit for distance traveled is the meter, $\mathrm{m}$. |
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DistanceTraveled (Copy) (Copy) |
The distance traveled is the length of a specific path between two points. The SI unit for distance traveled is the meter, $\mathrm{m}$. |
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DistanceTraveled (Copy) (Copy) (Copy) |
The distance traveled is the length of a specific path between two points. The SI unit for distance traveled is the meter, $\mathrm{m}$. |
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DistanceUnit |
The SI unit of distance is the meter (m). |
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DistanceUnit (Copy) |
The SI unit of distance is the meter (m). |
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DistanceUnit (Copy) (Copy) |
The SI unit of distance is the meter (m). |
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DivergingLensFocalRay |
For a diverging lens, the focal ray originates at the object, travels toward the back focus, passes through the lens, and changes direction to travel parallel to the lens axis. |
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DivergingLensFocalRay (Copy) |
For a diverging lens, the focal ray originates at the object, travels toward the back focus, passes through the lens, and changes direction to travel parallel to the lens axis. |
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DivergingLensFocalRay (Copy) (Copy) |
For a diverging lens, the focal ray originates at the object, travels toward the back focus, passes through the lens, and changes direction to travel parallel to the lens axis. |
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DivergingLensMirrorImage |
The image formed by a diverging lens or mirror is virtual, upright, and smaller than the object. |
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DivergingLensMirrorImage (Copy) |
The image formed by a diverging lens or mirror is virtual, upright, and smaller than the object. |
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DivergingLensMirrorImage (Copy) (Copy) |
The image formed by a diverging lens or mirror is virtual, upright, and smaller than the object. |
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DivergingLensMirrorImage (Copy) (Copy) (Copy) |
The image formed by a diverging lens or mirror is virtual, upright, and smaller than the object. |
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DivergingLensParallelRay |
For a diverging lens, the parallel ray originates at the object, travels parallel to the lens axis, passes through the lens, and changes direction to appear to originate from the front focus. |
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DivergingLensParallelRay (Copy) |
For a diverging lens, the parallel ray originates at the object, travels parallel to the lens axis, passes through the lens, and changes direction to appear to originate from the front focus. |
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DivergingLensParallelRay (Copy) (Copy) |
For a diverging lens, the parallel ray originates at the object, travels parallel to the lens axis, passes through the lens, and changes direction to appear to originate from the front focus. |
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DivergingMirrorFocalRay |
For a diverging mirror, the focal ray originates at the object, travels toward the back focus, is reflected, and travels parallel to the mirror axis. |
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DivergingMirrorFocalRay (Copy) |
For a diverging mirror, the focal ray originates at the object, travels toward the back focus, is reflected, and travels parallel to the mirror axis. |
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DivergingMirrorFocalRay (Copy) (Copy) |
For a diverging mirror, the focal ray originates at the object, travels toward the back focus, is reflected, and travels parallel to the mirror axis. |
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DivergingMirrorFocalRay (Copy) (Copy) |
For a diverging mirror, the focal ray originates at the object, travels toward the back focus, is reflected, and travels parallel to the mirror axis. |
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DivergingMirrorParallelRay |
For a diverging mirror, the parallel ray originates at the object, travels parallel to the mirror axis, is reflected, and changes direction to appear to originate from the back focus. |
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DivergingMirrorParallelRay (Copy) |
For a diverging mirror, the parallel ray originates at the object, travels parallel to the mirror axis, is reflected, and changes direction to appear to originate from the back focus. |
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DivergingMirrorParallelRay (Copy) (Copy) |
For a diverging mirror, the parallel ray originates at the object, travels parallel to the mirror axis, is reflected, and changes direction to appear to originate from the back focus. |
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Duration |
A duration is the magnitude of a time interval or time period. The SI unit of duration is the second, $\mathrm{s}$. |
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Duration (Copy) |
A duration is the magnitude of a time interval or time period. The SI unit of duration is the second, $\mathrm{s}$. |
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Duration (Copy) (Copy) |
A duration is the magnitude of a time interval or time period. The SI unit of duration is the second, $\mathrm{s}$. |
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Dynamics |
Dynamics is the branch of mechanics that studies the motion of objects and the forces that cause that motion, focusing on how forces affect acceleration and movement. |
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Dynamics (Copy) |
Dynamics is the branch of mechanics that studies the motion of objects and the forces that cause that motion, focusing on how forces affect acceleration and movement. |
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Dynamics (Copy) (Copy) |
Dynamics is the branch of mechanics that studies the motion of objects and the forces that cause that motion, focusing on how forces affect acceleration and movement. |
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Dynamics (Copy) (Copy) (Copy) |
Dynamics is the branch of mechanics that studies the motion of objects and the forces that cause that motion, focusing on how forces affect acceleration and movement. |
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EarthMass |
Earth's mass is approximately $5.97 \times 10^{24}$ kg. |
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EarthMass (Copy) |
Earth's mass is approximately $5.97 \times 10^{24}$ kg. |
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EarthMass (Copy) (Copy) |
Earth's mass is approximately $5.97 \times 10^{24}$ kg. |
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EarthMass (Copy) (Copy) (Copy) |
Earth's mass is approximately $5.97 \times 10^{24}$ kg. |
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EarthRadius |
Earth's radius is approximately $6.4 \times 10^{6}$ m. |
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EarthRadius (Copy) |
Earth's radius is approximately $6.4 \times 10^{6}$ m. |
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EarthRadius (Copy) (Copy) |
Earth's radius is approximately $6.4 \times 10^{6}$ m. |
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EarthRadius (Copy) (Copy) (Copy) |
Earth's radius is approximately $6.4 \times 10^{6}$ m. |
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