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Label Description LG Status Operations
EnergyConserved (Copy) Energy is conserved. 0 Draft Edit
EnergyConserved (Copy) (Copy) Energy is conserved. 0 Draft Edit
EuclideanVector A Euclidean vector is a geometric object that has magnitude and direction. 0 Ready Edit
EuclideanVector (Copy) A Euclidean vector is a geometric object that has magnitude and direction. 0 Draft Edit
EuclideanVector (Copy) (Copy) A Euclidean vector is a geometric object that has magnitude and direction. 0 Draft Edit
EuclideanVector (Copy) (Copy) (Copy) A Euclidean vector is a geometric object that has magnitude and direction. 0 Draft Edit
EuclideanVector (Copy) (Copy) (Copy) A Euclidean vector is a geometric object that has magnitude and direction. 0 Draft Edit
EuclideanVector (Copy) (Copy) (Copy) A Euclidean vector is a geometric object that has magnitude and direction. 0 Draft Edit
Evidence Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. 0 Ready Edit
Evidence (Copy) Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. 0 Draft Edit
Evidence (Copy) Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. 0 Draft Edit
Evidence (Copy) (Copy) Evidence is data that have been represented, analyzed, and interpreted in the context of a specific scientific question. 0 Draft Edit
Factorial The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. 0 Ready Edit
Factorial (Copy) The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. 0 Draft Edit
Factorial (Copy) (Copy) The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. 0 Draft Edit
Factorial (Copy) (Copy) The factorial of a number $n$, $n!$, is $n \times (n-1) \times (n-2) \times \ldots \times 2 \times 1$. 0 Draft Edit
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. 0 Draft Edit
FluidResistance Fluid resistance is the force exerted on an object by a fluid because of the object is moving through the fluid. 0 Ready Edit
FluidResistance (Copy) Fluid resistance is the force exerted on an object by a fluid because of the object is moving through the fluid. 0 Draft Edit
FluidResistance (Copy) (Copy) Fluid resistance is the force exerted on an object by a fluid because of the object is moving through the fluid. 0 Draft Edit
FluidResistanceDirection The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. 0 Ready Edit
FluidResistanceDirection (Copy) The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. 0 Draft Edit
FluidResistanceDirection (Copy) (Copy) The direction of the force of fluid resistance on an object is opposite to the object's motion through the fluid. 0 Draft Edit
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. 0 Draft Edit
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. 0 Draft Edit
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. 0 Draft Edit
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. 0 Draft Edit
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. 0 Ready Edit
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. 0 Draft Edit
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. 0 Draft Edit
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). 0 Ready Edit
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). 0 Draft Edit
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). 0 Draft Edit
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). 0 Draft Edit
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). 0 Draft Edit
Focus An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. 0 Ready Edit
Focus (Copy) An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. 0 Draft Edit
Focus (Copy) (Copy) An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. 0 Draft Edit
Focus (Copy) (Copy) (Copy) An optical element's focus is the point that incoming paraxial light rays converge to or seem to diverge from. 0 Draft Edit
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, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. 0 Ready Edit
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, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. 0 Draft Edit
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, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. 0 Draft Edit
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, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. 0 Ready Edit
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, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. 0 Draft Edit
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, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. 0 Draft Edit
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, $\mathrm{N}$. $1 \, \mathrm{N} = 1 \, \mathrm{kg \cdot m/s}^2$. 0 Draft Edit
Force-PushorPull A force is a push or a pull. Forces have strength and direction. 0 Ready Edit
Force-PushorPull (Copy) A force is a push or a pull. Forces have strength and direction. 0 Draft Edit
Force-PushorPull (Copy) (Copy) A force is a push or a pull. Forces have strength and direction. 0 Draft Edit
Force-PushorPull (Copy) (Copy) (Copy) A force is a push or a pull. Forces have strength and direction. 0 Draft Edit

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