The graph of f(t) is given below: (Click on graph to enlarge) a. Represent f(t) using a combination of Heaviside step functions. Use h(t-a) for the Heaviside function shifted a units horizontally. f(t)== b. Find the Laplace transform F(a)= C(f(t)) for 0. F()=L(f(t)) help (formulas) help (formulas)

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter4: Calculating The Derivative
Section4.2: Derivatives Of Products And Quotients
Problem 36E
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The graph of f(t) is given below:
(Click on graph to enlarge)
a. Represent f(t) using a combination of Heaviside step functions. Use h(t-a) for the Heaviside function shifted a units
horizontally.
f(t)=
b. Find the Laplace transform F(a)= C{f(t)) for 0.
F(s) C {f(t)}-
help (formulas)
help (formulas)
Transcribed Image Text:The graph of f(t) is given below: (Click on graph to enlarge) a. Represent f(t) using a combination of Heaviside step functions. Use h(t-a) for the Heaviside function shifted a units horizontally. f(t)= b. Find the Laplace transform F(a)= C{f(t)) for 0. F(s) C {f(t)}- help (formulas) help (formulas)
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