coexpennan
2021-09-10
Consider a first order differential equation
delilnaT
Skilled2021-09-11Added 94 answers
Possible derivation:
Differentiate the sum term by term and factor out constants:
The derivative of
INTERMEDIATE STEPS:
Possible derivation:
The limit definition of the derivative for a function f(y) is
Substitute f(y + h) and f(y) into the limit definition for the derivative:
In order to properly evaluate the limit, the h in the denominator needs to be canceled out. Begin by expanding all powers of (y + h):
Combine like terms in the numerator and order by descending powers of y:
Factor h out of the numerator:
The limit variable h approaches, but is never equal to, 0 and therefore can be algebraically canceled:
Evaluate the limit as h goes to 0:
Simplify to finish computing the derivative:
Answer:
Simplify the expression:
The derivative of y is 1:
Answer:
INTERMEDIATE STEPS:
Possible derivation:
The limit definition of the derivative for a function f(y) is
Substitute f(y + h) and f(y) into the limit definition for the derivative:
Find the local maximum and minimum values and saddle points of the function. If you have three-dimensional graphing software, graph the function with a domain and viewpoint that reveal all the important aspects of the function
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