Is it possible to solve the value of lambda that maximizes the following equation analytically?:

Jayla Christensen

Jayla Christensen

Answered question

2022-06-15

Is it possible to solve the value of lambda that maximizes the following equation analytically?:
1 e 30 λ 30 λ e 30 λ
So then the derivative is equal to:
e 30 λ λ 30 900 λ 2 + 30 e 30 λ 900 λ 2 + 30 e 30 λ = 0
Is it possible to get an analytical solution for lambda or does it need to be solved numerically?

Answer & Explanation

humusen6p

humusen6p

Beginner2022-06-16Added 22 answers

Calling y = 30 λ we have
f ( y ) = 1 y ( 1 y + 1 ) e y
now
f ( y ) = e y ( y 2 + y e y + 1 ) y 2 = 0
so making approximations
1 + y + y 2 e y y 2 2 y 3 3 ! y 4 4 ! = 0 1 2 = y 6 + y 2 24
and solving we obtain y = { 6 , 2 } so with a sufficient approximation the maximum is located at y = 30 λ = 2 λ = 1 15

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