Free Fall Model (Non-Uniform Gravitation) (Q4398): Difference between revisions

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Q3830 (Deleted Item)
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Property / contains: Vanishing Drag Coefficient / rank
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Property / assumes: Vanishing Drag Coefficient / rank
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Property / assumes: Vanishing Air Density / rank
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Property / contains: Free Fall Equation (Non-Uniform Gravitation) / rank
 
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Property / contains: Free Fall Initial Condition / rank
 
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Property / contains: Free Fall Initial Condition / qualifier
 
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modeling the fall of objects by the laws of classical mechanics. A free fall is any motion of a body where gravity is the only force acting upon it. Hence, we are neglecting the aerodynamic drag (vanishing drag coefficient and/or density of air) but NOT assuming a uniform gravitational field.
Property / description: modeling the fall of objects by the laws of classical mechanics. A free fall is any motion of a body where gravity is the only force acting upon it. Hence, we are neglecting the aerodynamic drag (vanishing drag coefficient and/or density of air) but NOT assuming a uniform gravitational field. / rank
 
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Property / described at URL: https://en.wikipedia.org/wiki/Free_fall / rank
 
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Property / described by source: From Moon-fall to motions under inverse square laws / rank
 
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Property / described by source: Radial Motion of Two Mutually Attracting Particles / rank
 
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Property / used by: Free Fall Determine Time / rank
 
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Property / used by: Free Fall Determine Velocity / rank
 
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Property / generalization of: Free Fall Model (Vacuum) / rank
 
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Property / generalization of: Free Fall Model (Vacuum) / qualifier
 

Latest revision as of 11:33, 15 January 2025

modeling the fall of objects in vacuum by the laws of classical mechanics for the case of non-uniform gravitation
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Free Fall Model (Non-Uniform Gravitation)
modeling the fall of objects in vacuum by the laws of classical mechanics for the case of non-uniform gravitation

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    modeling the fall of objects by the laws of classical mechanics. A free fall is any motion of a body where gravity is the only force acting upon it. Hence, we are neglecting the aerodynamic drag (vanishing drag coefficient and/or density of air) but NOT assuming a uniform gravitational field.
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