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SunMass (Copy) |
The Sun's mass is $1.99 \times 10^{30}$ kg. |
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SunMass (Copy) (Copy) |
The Sun's mass is $1.99 \times 10^{30}$ kg. |
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SunMass (Copy) (Copy) |
The Sun's mass is $1.99 \times 10^{30}$ kg. |
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Tangent |
Given a right triangle, the tangent of one of its acute angles, $\tan\theta$, is the ratio of the length of the side of the triangle opposite to the angle $\theta$ to the length of the side adjacent to $\theta$. |
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Tangent (Copy) |
Given a right triangle, the tangent of one of its acute angles, $\tan\theta$, is the ratio of the length of the side of the triangle opposite to the angle $\theta$ to the length of the side adjacent to $\theta$. |
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Temperature |
Definition of temperature, TBD |
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Temperature (Copy) |
Definition of temperature, TBD |
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TemperatureUnit |
The SI unit of thermodynamic temperature is the kelvin, K. The kelvin is the fraction $1/273.16$ of the thermodynamic temperature of the triple point of water. |
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TemperatureUnit (Copy) |
The SI unit of thermodynamic temperature is the kelvin, K. The kelvin is the fraction $1/273.16$ of the thermodynamic temperature of the triple point of water. |
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TemperatureUnit (Copy) (Copy) |
The SI unit of thermodynamic temperature is the kelvin, K. The kelvin is the fraction $1/273.16$ of the thermodynamic temperature of the triple point of water. |
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Tensor |
A tensor is a quantity that changes in a certain way under a change of coordinates. |
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Tensor (Copy) |
A tensor is a quantity that changes in a certain way under a change of coordinates. |
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Tensor (Copy) (Copy) |
A tensor is a quantity that changes in a certain way under a change of coordinates. |
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TerminalSpeed |
Terminal speed is the speed at which the magnitude of the force of fluid resistance on a falling object is equal to the magnitude of the gravitational force on the object. |
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TerminalSpeed (Copy) |
Terminal speed is the speed at which the magnitude of the force of fluid resistance on a falling object is equal to the magnitude of the gravitational force on the object. |
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Time |
Definition of time TBD. The SI unit for time is the second, $\textrm{s}$. |
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Time (Copy) |
Definition of time TBD. The SI unit for time is the second, $\textrm{s}$. |
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Time (Copy) |
Definition of time TBD. The SI unit for time is the second, $\textrm{s}$. |
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Time (Copy) (Copy) |
Definition of time TBD. The SI unit for time is the second, $\textrm{s}$. |
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Time (Copy) (Copy) |
Definition of time TBD. The SI unit for time is the second, $\textrm{s}$. |
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TimeInterval |
A time interval, or time period, is a portion of time that begins and ends at specific instants. |
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TimeInterval (Copy) |
A time interval, or time period, is a portion of time that begins and ends at specific instants. |
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TopOfFlight |
At the highest point of an object's trajectory, the vertical component of the object's velocity is zero. |
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TopOfFlight (Copy) |
At the highest point of an object's trajectory, the vertical component of the object's velocity is zero. |
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TotalInternalReflection |
At the interface of media having indices of refraction $n_\text{1}$ and $n_2$, with $n_1 > n_2$, there is a critical angle $\theta_\text{c}$ given by $n_1 \sin \theta_\text{c} = n_2 \sin \theta_2$. For angles of incidence $\theta_1 > \theta_\text{c}$ , all of the light is reflected and follows the law of reflection. |
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TotalInternalReflection (Copy) |
At the interface of media having indices of refraction $n_\text{1}$ and $n_2$, with $n_1 > n_2$, there is a critical angle $\theta_\text{c}$ given by $n_1 \sin \theta_\text{c} = n_2 \sin \theta_2$. For angles of incidence $\theta_1 > \theta_\text{c}$ , all of the light is reflected and follows the law of reflection. |
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TowardAwayFromOrigin |
perhaps a positive vel is motion away from origin, negative vel is motion toward origin...no that's wrong. |
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TowardAwayFromOrigin (Copy) |
perhaps a positive vel is motion away from origin, negative vel is motion toward origin...no that's wrong. |
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TowardAwayFromOrigin (Copy) |
perhaps a positive vel is motion away from origin, negative vel is motion toward origin...no that's wrong. |
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TowardAwayFromOrigin (Copy) (Copy) |
perhaps a positive vel is motion away from origin, negative vel is motion toward origin...no that's wrong. |
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Translucent |
Translucent materials transmit some light. |
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Translucent (Copy) |
Translucent materials transmit some light. |
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Transmission |
Transmission is when light goes through an object. |
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Transmission (Copy) |
Transmission is when light goes through an object. |
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Transparent |
Transparent materials transmit a lot of light. |
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Transparent (Copy) |
Transparent materials transmit a lot of light. |
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TwoForceOppDirCancel |
If two forces of the same strength act on an object at the same time in opposite directions, they will cancel one another. |
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TwoForceOppDirCancel (Copy) |
If two forces of the same strength act on an object at the same time in opposite directions, they will cancel one another. |
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TwoForceOppDirCancel (Copy) |
If two forces of the same strength act on an object at the same time in opposite directions, they will cancel one another. |
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TwoForceOppDirQual |
If two forces act on an object at the same time in opposite directions, and one force is stronger than the other, the combined force will be weaker than this stronger force, and the direction of the combined force will be the direction of this stronger force. |
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TwoForceOppDirQual (Copy) |
If two forces act on an object at the same time in opposite directions, and one force is stronger than the other, the combined force will be weaker than this stronger force, and the direction of the combined force will be the direction of this stronger force. |
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TwoForceOppDirQual (Copy) |
If two forces act on an object at the same time in opposite directions, and one force is stronger than the other, the combined force will be weaker than this stronger force, and the direction of the combined force will be the direction of this stronger force. |
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TwoForceSameDirQual |
If two forces act on an object at the same time in the same direction, the combined force will be stronger than either of the two individual forces, and the direction of the combined force will be the same as the direction of the two forces. |
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TwoForceSameDirQual (Copy) |
If two forces act on an object at the same time in the same direction, the combined force will be stronger than either of the two individual forces, and the direction of the combined force will be the same as the direction of the two forces. |
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TwoForceSameDirQual (Copy) |
If two forces act on an object at the same time in the same direction, the combined force will be stronger than either of the two individual forces, and the direction of the combined force will be the same as the direction of the two forces. |
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TwoForceSameDirQual (Copy) (Copy) |
If two forces act on an object at the same time in the same direction, the combined force will be stronger than either of the two individual forces, and the direction of the combined force will be the same as the direction of the two forces. |
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TwoForceSameDirQual (Copy) (Copy) |
If two forces act on an object at the same time in the same direction, the combined force will be stronger than either of the two individual forces, and the direction of the combined force will be the same as the direction of the two forces. |
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UnbalancedForces |
If the forces acting on an object are not balanced, they are unbalanced. |
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UnbalancedForces (Copy) |
If the forces acting on an object are not balanced, they are unbalanced. |
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UnbalancedForces (Copy) |
If the forces acting on an object are not balanced, they are unbalanced. |
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