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EnergyConserved (Copy) |
Energy is conserved. |
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EnergyConserved (Copy) (Copy) |
Energy is conserved. |
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EuclideanVector |
A Euclidean vector is a geometric object that has magnitude and direction. |
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EuclideanVector (Copy) |
A Euclidean vector is a geometric object that has magnitude and direction. |
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EuclideanVector (Copy) (Copy) |
A Euclidean vector is a geometric object that has magnitude and direction. |
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EuclideanVector (Copy) (Copy) (Copy) |
A Euclidean vector is a geometric object that has magnitude and direction. |
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EuclideanVector (Copy) (Copy) (Copy) |
A Euclidean vector is a geometric object that has magnitude and direction. |
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EuclideanVector (Copy) (Copy) (Copy) |
A Euclidean vector is a geometric object that has magnitude and direction. |
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Evidence |
Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. |
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Evidence (Copy) |
Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. |
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Evidence (Copy) |
Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. |
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Evidence (Copy) (Copy) |
Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. |
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Factorial |
The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. |
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Factorial (Copy) |
The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. |
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Factorial (Copy) (Copy) |
The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. |
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Factorial (Copy) (Copy) |
The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. |
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FluidMechanics |
Fluid mechanics is the branch of mechanics that studies the behavior of fluids (liquids and gases) at rest and in motion, including the forces that act on them. |
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FluidResistance |
Fluid resistance is the force exerted on an object by a fluid because of the object is moving through the fluid. |
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FluidResistance (Copy) |
Fluid resistance is the force exerted on an object by a fluid because of the object is moving through the fluid. |
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FluidResistance (Copy) (Copy) |
Fluid resistance is the force exerted on an object by a fluid because of the object is moving through the fluid. |
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FluidResistanceDirection |
The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. |
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FluidResistanceDirection (Copy) |
The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. |
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FluidResistanceDirection (Copy) (Copy) |
The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. |
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FluidResistanceDirection (Copy) (Copy) (Copy) |
The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. |
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FluidResistanceDirection (Copy) (Copy) (Copy) (Copy) |
The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. |
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FluidResistanceDirection (Copy) (Copy) (Copy) (Copy) (Copy) |
The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. |
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FluidResistanceDirection (Copy) (Copy) (Copy) (Copy) (Copy) |
The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. |
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FluidResistanceStrength |
The strength of the force of fluid resistance on an object is often modeled as $F=C v^x$ where $C$ is a constant that depends on the object and the fluid, $v$ is the speed of the object relative to the fluid, and the value of $x$ is usually 1, 2, or some number in between. |
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FluidResistanceStrength (Copy) |
The strength of the force of fluid resistance on an object is often modeled as $F=C v^x$ where $C$ is a constant that depends on the object and the fluid, $v$ is the speed of the object relative to the fluid, and the value of $x$ is usually 1, 2, or some number in between. |
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FluidResistanceStrength (Copy) |
The strength of the force of fluid resistance on an object is often modeled as $F=C v^x$ where $C$ is a constant that depends on the object and the fluid, $v$ is the speed of the object relative to the fluid, and the value of $x$ is usually 1, 2, or some number in between. |
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FocalLength |
An optical element's focal length is the distance from the center of the element to the focus. For a converging(diverging) element the distance is defined to be positive(negative). |
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FocalLength (Copy) |
An optical element's focal length is the distance from the center of the element to the focus. For a converging(diverging) element the distance is defined to be positive(negative). |
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FocalLength (Copy) (Copy) |
An optical element's focal length is the distance from the center of the element to the focus. For a converging(diverging) element the distance is defined to be positive(negative). |
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FocalLength (Copy) (Copy) |
An optical element's focal length is the distance from the center of the element to the focus. For a converging(diverging) element the distance is defined to be positive(negative). |
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FocalLength (Copy) (Copy) (Copy) |
An optical element's focal length is the distance from the center of the element to the focus. For a converging(diverging) element the distance is defined to be positive(negative). |
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Focus |
An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. |
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Focus (Copy) |
An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. |
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Focus (Copy) (Copy) |
An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. |
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Focus (Copy) (Copy) (Copy) |
An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. |
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Force |
A force is a push or a pull that accelerates an object. Forces have magnitude (strength) and direction. The SI unit for the magnitude of force is the newton, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. |
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Force (Copy) |
A force is a push or a pull that accelerates an object. Forces have magnitude (strength) and direction. The SI unit for the magnitude of force is the newton, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. |
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Force (Copy) (Copy) |
A force is a push or a pull that accelerates an object. Forces have magnitude (strength) and direction. The SI unit for the magnitude of force is the newton, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. |
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Force-delta-v |
A force is a push or a pull, applied for a duration, that changes an object's velocity. The SI unit for the magnitude of force is the newton, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. |
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Force-delta-v (Copy) |
A force is a push or a pull, applied for a duration, that changes an object's velocity. The SI unit for the magnitude of force is the newton, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. |
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Force-delta-v (Copy) (Copy) |
A force is a push or a pull, applied for a duration, that changes an object's velocity. The SI unit for the magnitude of force is the newton, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. |
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Force-delta-v (Copy) (Copy) (Copy) |
A force is a push or a pull, applied for a duration, that changes an object's velocity. The SI unit for the magnitude of force is the newton, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. |
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Force-PushorPull |
A force is a push or a pull. Forces have strength and direction. |
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Force-PushorPull (Copy) |
A force is a push or a pull. Forces have strength and direction. |
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Force-PushorPull (Copy) (Copy) |
A force is a push or a pull. Forces have strength and direction. |
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Force-PushorPull (Copy) (Copy) (Copy) |
A force is a push or a pull. Forces have strength and direction. |
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