Calculus Examples

Find the Derivative Using Product Rule - d/dy p(y)=(y^-1+y^-2)(8y^-3-10y^-4)
Step 1
Differentiate using the Product Rule which states that is where and .
Step 2
By the Sum Rule, the derivative of with respect to is .
Step 3
Evaluate .
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Step 3.1
Since is constant with respect to , the derivative of with respect to is .
Step 3.2
Differentiate using the Power Rule which states that is where .
Step 3.3
Multiply by .
Step 4
Evaluate .
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Step 4.1
Since is constant with respect to , the derivative of with respect to is .
Step 4.2
Differentiate using the Power Rule which states that is where .
Step 4.3
Multiply by .
Step 5
Differentiate.
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Step 5.1
Simplify each term.
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Step 5.1.1
Rewrite the expression using the negative exponent rule .
Step 5.1.2
Combine and .
Step 5.1.3
Move the negative in front of the fraction.
Step 5.1.4
Rewrite the expression using the negative exponent rule .
Step 5.1.5
Combine and .
Step 5.2
By the Sum Rule, the derivative of with respect to is .
Step 5.3
Differentiate using the Power Rule which states that is where .
Step 5.4
Differentiate using the Power Rule which states that is where .
Step 6
Simplify.
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Step 6.1
Reorder terms.
Step 6.2
Simplify each term.
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Step 6.2.1
Simplify each term.
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Step 6.2.1.1
Rewrite the expression using the negative exponent rule .
Step 6.2.1.2
Rewrite the expression using the negative exponent rule .
Step 6.2.2
Expand using the FOIL Method.
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Step 6.2.2.1
Apply the distributive property.
Step 6.2.2.2
Apply the distributive property.
Step 6.2.2.3
Apply the distributive property.
Step 6.2.3
Simplify and combine like terms.
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Step 6.2.3.1
Simplify each term.
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Step 6.2.3.1.1
Multiply .
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Step 6.2.3.1.1.1
Multiply by .
Step 6.2.3.1.1.2
Multiply by by adding the exponents.
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Step 6.2.3.1.1.2.1
Multiply by .
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Step 6.2.3.1.1.2.1.1
Raise to the power of .
Step 6.2.3.1.1.2.1.2
Use the power rule to combine exponents.
Step 6.2.3.1.1.2.2
Add and .
Step 6.2.3.1.2
Multiply .
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Step 6.2.3.1.2.1
Multiply by .
Step 6.2.3.1.2.2
Multiply by by adding the exponents.
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Step 6.2.3.1.2.2.1
Use the power rule to combine exponents.
Step 6.2.3.1.2.2.2
Add and .
Step 6.2.3.1.3
Combine.
Step 6.2.3.1.4
Multiply by by adding the exponents.
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Step 6.2.3.1.4.1
Multiply by .
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Step 6.2.3.1.4.1.1
Raise to the power of .
Step 6.2.3.1.4.1.2
Use the power rule to combine exponents.
Step 6.2.3.1.4.2
Add and .
Step 6.2.3.1.5
Multiply by .
Step 6.2.3.1.6
Combine.
Step 6.2.3.1.7
Multiply by by adding the exponents.
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Step 6.2.3.1.7.1
Use the power rule to combine exponents.
Step 6.2.3.1.7.2
Add and .
Step 6.2.3.1.8
Multiply by .
Step 6.2.3.2
Combine the numerators over the common denominator.
Step 6.2.3.3
Add and .
Step 6.2.4
Simplify each term.
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Step 6.2.4.1
Rewrite the expression using the negative exponent rule .
Step 6.2.4.2
Rewrite the expression using the negative exponent rule .
Step 6.2.4.3
Combine and .
Step 6.2.4.4
Move the negative in front of the fraction.
Step 6.2.5
Simplify each term.
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Step 6.2.5.1
Rewrite the expression using the negative exponent rule .
Step 6.2.5.2
Combine and .
Step 6.2.5.3
Rewrite the expression using the negative exponent rule .
Step 6.2.5.4
Combine and .
Step 6.2.5.5
Move the negative in front of the fraction.
Step 6.2.6
Expand using the FOIL Method.
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Step 6.2.6.1
Apply the distributive property.
Step 6.2.6.2
Apply the distributive property.
Step 6.2.6.3
Apply the distributive property.
Step 6.2.7
Simplify and combine like terms.
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Step 6.2.7.1
Simplify each term.
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Step 6.2.7.1.1
Multiply .
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Step 6.2.7.1.1.1
Multiply by .
Step 6.2.7.1.1.2
Multiply by by adding the exponents.
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Step 6.2.7.1.1.2.1
Use the power rule to combine exponents.
Step 6.2.7.1.1.2.2
Add and .
Step 6.2.7.1.2
Multiply .
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Step 6.2.7.1.2.1
Multiply by .
Step 6.2.7.1.2.2
Multiply by .
Step 6.2.7.1.2.3
Multiply by .
Step 6.2.7.1.2.4
Multiply by by adding the exponents.
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Step 6.2.7.1.2.4.1
Use the power rule to combine exponents.
Step 6.2.7.1.2.4.2
Add and .
Step 6.2.7.1.3
Multiply .
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Step 6.2.7.1.3.1
Multiply by .
Step 6.2.7.1.3.2
Multiply by .
Step 6.2.7.1.3.3
Multiply by by adding the exponents.
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Step 6.2.7.1.3.3.1
Use the power rule to combine exponents.
Step 6.2.7.1.3.3.2
Add and .
Step 6.2.7.1.4
Multiply .
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Step 6.2.7.1.4.1
Multiply by .
Step 6.2.7.1.4.2
Multiply by .
Step 6.2.7.1.4.3
Multiply by .
Step 6.2.7.1.4.4
Multiply by .
Step 6.2.7.1.4.5
Multiply by by adding the exponents.
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Step 6.2.7.1.4.5.1
Use the power rule to combine exponents.
Step 6.2.7.1.4.5.2
Add and .
Step 6.2.7.2
Combine the numerators over the common denominator.
Step 6.2.7.3
Subtract from .
Step 6.2.8
Move the negative in front of the fraction.
Step 6.3
Combine the numerators over the common denominator.
Step 6.4
Subtract from .
Step 6.5
Subtract from .
Step 6.6
Add and .
Step 6.7
Move the negative in front of the fraction.