Electrical Engineering Given the RL circuit below. Use the Integrating Factor method to solve for the di current, i, if L+Ri=V dt where i(0)=0, L=1 Henry, R=a2 and a) V₂ = b -2at b) V₂ = te

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27.
For part a) with S, =V =b, the general solution (i.e. before substituting initial
conditions) is
28. For part b) with S = V, = te 2at, the choice of I in the D-I method calculation is
For part b) with S, =V, =te
29.
2at, (IF.Q dt integrated to an expression with
term(s)
-at
1.
-at
i) -te
ii)
For questions 30-34 consider the following:
The relationship between displacement, s, velocity, v and acceleration, a of a piston is
given by
Transcribed Image Text:27. For part a) with S, =V =b, the general solution (i.e. before substituting initial conditions) is 28. For part b) with S = V, = te 2at, the choice of I in the D-I method calculation is For part b) with S, =V, =te 29. 2at, (IF.Q dt integrated to an expression with term(s) -at 1. -at i) -te ii) For questions 30-34 consider the following: The relationship between displacement, s, velocity, v and acceleration, a of a piston is given by
-fleet01-xythos.content.blackboardcdn.com/5d0a2196b3459/3675973?X-Blackboard-Expirati
For questions 27-29 consider the following:
Electrical Engineering
An object of mass m falls from rest and Given the RL circuit below.
Mechanical and Civil Engineering
its velocity v given by
dv
m +kv =S.
dt
Use the Integrating Factor method to Use the Integrating Factor method to solve for the
dv
di
-+kv =S
where current,
i, if
L+ Ri=V
dt
solve
for
m-
where
dt
v(0) = 0, m=1, k=a, and
a) S, =b
b) S, = te
i(0)=0, L=1 Henry, R=a 2 and
a) V =b
-2at
b) V = te
-2at
Transcribed Image Text:-fleet01-xythos.content.blackboardcdn.com/5d0a2196b3459/3675973?X-Blackboard-Expirati For questions 27-29 consider the following: Electrical Engineering An object of mass m falls from rest and Given the RL circuit below. Mechanical and Civil Engineering its velocity v given by dv m +kv =S. dt Use the Integrating Factor method to Use the Integrating Factor method to solve for the dv di -+kv =S where current, i, if L+ Ri=V dt solve for m- where dt v(0) = 0, m=1, k=a, and a) S, =b b) S, = te i(0)=0, L=1 Henry, R=a 2 and a) V =b -2at b) V = te -2at
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