Category: Differential Calculus
"Published in Newark, California, USA"
Find y' for
Solution:
Consider the given equation above
The given equation is a simple algebraic function in terms of x. Take the derivative of the given equation with respect to x by power formula as follows
Therefore, the answer is
This website will show the principles of solving Math problems in Arithmetic, Algebra, Plane Geometry, Solid Geometry, Analytic Geometry, Trigonometry, Differential Calculus, Integral Calculus, Statistics, Differential Equations, Physics, Mechanics, Strength of Materials, and Chemical Engineering Math that we are using anywhere in everyday life. This website is also about the derivation of common formulas and equations. (Founded on September 28, 2012 in Newark, California, USA)
Friday, December 6, 2013
Thursday, December 5, 2013
Derivative - Algebraic Functions, Powers, 5
Category: Differential Calculus
"Published in Newark, California, USA"
Find y' for
Solution:
Consider the given equation above
The exponents at the given equation are negative. If the exponents are negative, then we can take the derivative by power formula also as follows
Therefore, the answer is
"Published in Newark, California, USA"
Find y' for
Solution:
Consider the given equation above
The exponents at the given equation are negative. If the exponents are negative, then we can take the derivative by power formula also as follows
Therefore, the answer is
Wednesday, December 4, 2013
Derivative - Algebraic Functions, Powers, 4
Category: Differential Calculus
"Published in Newark, California, USA"
Find y' for
Solution:
Consider the given equation above
The exponents at the given equation are fractions. If the exponents are fractions, then we can take the derivative by power formula also as follows
Therefore, the answer is
"Published in Newark, California, USA"
Find y' for
Solution:
Consider the given equation above
The exponents at the given equation are fractions. If the exponents are fractions, then we can take the derivative by power formula also as follows
Therefore, the answer is
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