Free Fall Equation (Non-Uniform Gravitation) (Q4406): Difference between revisions
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Created claim: defining formula (P29): a^2+b^2=c^2 |
Created claim: in defining formula (P597): t_\mathrm{ff} |
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description / en | description / en | ||
a free fall is any motion of a body where gravity is the only force acting upon it, hence neglecting the aerodynamic drag but allowing for a non-uniform gravitational field. Moreover, assuming the falling object to be a point mass. | a free fall is any motion of a body where gravity is the only force acting upon it, hence neglecting the aerodynamic drag but allowing for a non-uniform gravitational field. Moreover, assuming the falling object to be a point mass. Note that Q stands here for the quantile function of the Beta distribution. | ||
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a^2+b^2=c^2 | y(t)=y_0~Q\left(1-\frac{t}{t_\mathrm{ff}};\frac{3}{2},\frac{1}{2}\right) | ||
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Property / Wikidata QID: Q38083707 / rank | |||
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t | |||
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Note that Q stands here for the quantile function of the Beta distribution | |||
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Latest revision as of 19:26, 5 December 2024
a free fall is any motion of a body where gravity is the only force acting upon it, hence neglecting the aerodynamic drag but allowing for a non-uniform gravitational field. Moreover, assuming the falling object to be a point mass. Note that Q stands here for the quantile function of the Beta distribution.
Language | Label | Description | Also known as |
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English | Free Fall Equation (Non-Uniform Gravitation) |
a free fall is any motion of a body where gravity is the only force acting upon it, hence neglecting the aerodynamic drag but allowing for a non-uniform gravitational field. Moreover, assuming the falling object to be a point mass. Note that Q stands here for the quantile function of the Beta distribution. |
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Note that Q stands here for the quantile function of the Beta distribution
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