Topic: Terminal Velocity Equation
Answers to Common Questions
What is the equation for terminal velocity?
The equation for terminal velocity is Vt= sqrt{2mg/pACd} where m = mass of the falling object, g = acceleration due to gravity, Cd = drag coefficient, p= density of the fluid through which the object is falling, and A = projected area of th... Read More »
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What is Terminal Velocity?
Terminal velocity is the state that an object reaches when a force of drag that acts on the object is equal to the force of gravity that acts on it. Read More »
Source: http://answers.ask.com/Science/Physics/what_is_terminal_velocity
How Fast is Terminal Velocity?
The terminal velocity speed is the same for any object. There are other things that determine when terminal velocity is reached. These things include gravitational pull, object mass, air density and drag. Look here for more information: htt... Read More »
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Featured Content: Terminal Velocity Equation
1% per 80 metres (262 ft) (see barometric formula). For objects falling through the atmosphere, for every 160 metres (525 ft) of falling, the terminal velocity ... More »
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Answers to Other Common Questions
Interestingly enough, the terminal velocity of free-fall on earth is approximately one hundred forty four miles per hour. This is fast enough to make skydiving very enjoyable. Read More »
Source: http://answers.ask.com/Science/Physics/what_is_the_speed_of_termi...
The equation for velocity depends on which type of velocity you wish to measure. There are different equations for motion, relative velocity, and polar coordinates. Read More »
Source: http://answers.ask.com/Science/Physics/what_is_the_equation_for_v...
At terminal velocity: D = W Cd * r * V ^2 * A / 2 = W. Read More »
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"Terminal velocity" describes the equilibrium point in kinematics where atmospheric drag on an object falling through a gaseous medium (usually the air) becomes equal and opposite to the acceleration due to gravity. Thus, the object cannot ... Read More »
Source: http://www.ehow.com/how_6134922_calculate-terminal-velocity.html
down and up forces balance at terminal velocity mass * g = v^2 * drag coefficient if mass and terminal velocity are known , drag coefficient can be found say mass = 100 kg, g = 9.8 (m/s)/s, terminal velocity = 70 m/s so at terminal velocity... Read More »
Source: http://wiki.answers.com/Q/What_is_the_equation_thast_describes_ho...
http://upload.wikimedia.org/math/6/e/3/6e306f943fc864e7ee41a1b3a7f16172.png Where: Vt = terminal velocity m = mass of the falling object g = acceleration due to gravity (~9.88ms-2) Cd = drag coefficient (see http://en.wikipedia.org/wiki/Dra... Read More »
Source: http://wiki.answers.com/Q/What_equation_can_determine_a_specific_...
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