Difference between revisions of "Math 22 Higher-Order Derivative"
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==Acceleration== | ==Acceleration== | ||
If <math>f(x)</math> is the position function, then <math>f'(x)</math> is the velocity function and <math>f''(x)</math> is the acceleration function. | If <math>f(x)</math> is the position function, then <math>f'(x)</math> is the velocity function and <math>f''(x)</math> is the acceleration function. | ||
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[[Math_22| '''Return to Topics Page''']] | [[Math_22| '''Return to Topics Page''']] | ||
'''This page were made by [[Contributors|Tri Phan]]''' | '''This page were made by [[Contributors|Tri Phan]]''' |
Revision as of 08:39, 25 July 2020
Higher-Order Derivatives
The "standard" derivative is called the first derivative of . The derivative of is the second derivative of, denoted by By continuing this process, we obtain higher-order derivative of .
Note: The 3rd derivative of is . However, we simply denote the derivative as for
Example: Find the first four derivative of
1)
Solution: |
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2)
Solution: |
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It is better to rewrite |
Then, |
Acceleration
If is the position function, then is the velocity function and is the acceleration function.
This page were made by Tri Phan