1. The Laplace transform of impulse δ(t) is





Ask Your Doubts Here

Type in
(Press Ctrl+g to toggle between English and the chosen language)

Comments

  • By: guest on 02 Jun 2017 01.13 am
    £f(t) = £-1F(s) = f(t) £[a f1(t) + bf2(t)] = aF1(s) + bF2(s) where £[f(t - T)] = e-sT F(s) £[e-at f(t)] = F(s + a) Initial value theorem Final value theroem Convolution Integral where t is dummy variable for t.
Show Similar Question And Answers
QA->Impulse of force?....
QA->After the attainment of political independence in 1947, Gandhiji felt that the Congress, as a propaganda vehicle and a parliamentary machine, had outlived its usefulness. So to keep the Congress away from unhealthy competition with political parties and communal bodies, Gandhiji towards the end of January 1948 sketched a draft constitution for the Congress to transform itself into ......?....
QA->ഇന്ത്യയിലെ ആദ്യ ബാഡ്‌മിന്റൺ ബ്രാന്റായ Transform ന്റെ ബ്രാൻഡ് അംബാസിഡറായി നിയമിതനായത്?....
QA->Largest Delta?....
QA->Which is not helpful for delta formation?....
MCQ->Assertion (A): If the Laplace transform is , the Laplaces transform of impulse response is given by Reason (R): The Laplace transform for an impulse function is 1.

....
MCQ->If h1[n] = 3δ[n] + δ[n - 1], h2[n] = 2δ[n] + δ[n - 2] h3[n] = δ[n] - 3δ[n - 1] + 7δ[n - 4] + 6δ[n - 6] h[n] = h1[n] h2[n] + h3[n] h1[n] has value....
MCQ->Assertion (A): Laplace transform of f(t) = e-at sin ωt is Reason (R): If Laplace transform of f(t) is F(s), then Laplace transform of e-at f(t) is F(s + a).

....
MCQ->Assertion (A): Laplace transform of impulse function is equal to area under the impulse.Reason (R): An impulse function whose area is unity is called unit impulse function.

....
MCQ->Given that F(s) is the one-sided Laplace transform of f(t), the Laplace transform of f(t )dt is....
Terms And Service:We do not guarantee the accuracy of available data ..We Provide Information On Public Data.. Please consult an expert before using this data for commercial or personal use | Powered By:Omega Web Solutions
© 2002-2017 Omega Education PVT LTD...Privacy | Terms And Conditions
Question ANSWER With Solution