Hi everyone, I am a student in Electrical Enigneering at Iowa State University. I'm in my senior year I have about 3 semsters left(Yes I know I am a super senior). My area of concentration within my degree is not very clear yet. I am interested in Power Electronics and Electromagnetics. I wish...
Hi everyone, I am a student in Electrical Enigneering at Iowa State University. I'm in my senior year I have about 3 semsters left(Yes I know I am a super senior). My area of concentration within my degree is not very clear yet. I am interested in Power Electronics and Electromagnetics. I wish...
I also have a new reply for you.
School is said to be for anybody, but you as a person who is engaged and ready to learn is takes naturally more advantage of school than a regular student. Also my advice to you is to do it disregarding the bad comments you might hear from people, like "Old...
Because convolution is commutative,
y(t) = u(t) * e^{t} = e^{t} * u(t)
therefore, using the general result
h(t)*u(t) = \int_{-\infty} ^{t} *e^{\tau} d\tau= e^{t} - e^{-\infty } = e^{t}
So, as an example given that
h(t) = e^{-t}*u(t)
f(t) = e^{-2t}*u(t)
and y(t) = h(t)* f(t) ...
Very Nice Job
I want to congratulate this event happening I am just a student but I will be a professional very soon. I strongly like the idea of merging with Sciam. To the best of the best!
Yes indeed that's exactly what I mean how to insulate them to avoid stimulation from their neighbors. The part I was thinking is powering each pin with water or air controlled by a valve, but please if you have any idea to give me a start on this project will be really satisfying.
Hello i am an Electrical Engineering undergraduate student at Iowa State University.
My purpose here in this thread is to ask anybody interested in my idea, I am asking an educated contribution on how to control a single pin with electromagnetic waves.
Lets go by parts, the model i am trying...
Homework Statement
The 3Phase loads are connected in parallel.
L1(Purely Resistive) consumes 300KW. Connected in wye!
L2(Purely Inductive) consumes 300KVAR. Connected in wye!
L3(Purely Capacitive) consumes 300KVAR. Connected in wye!
The part I don't understand is the following: LiNE...
I know but what's going on is that I need to use Variation of parameters and for that I need y_1 and y_2 so I am stuck. One of my friends told me they have used Euler's method to find y_1 and y_2