Physics, 13.02.2020 18:39 juancarlosguevpdppo5
The impulse response for an unstable LTI system is given as: h(t) = 24 uſt) – e' u(t). For a feedback transfer function, G(s): (a) Determine whether a proportional feedback can BIBO-stabilize the system, and if so, find the value of K.(b) Examine whether a derivative feedback can stabilize the system, and if so, obtain the value(s) of K.(c) Using proportional-plus-derivative feedback control, we want to put the closed-loop poles at -6, -8}. Calculate the values of Ki and K2.
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Afixed electric space heater wired by a cable with an ampacity of 30 a should draw a maximum current of a. 30 a. b. 24 a. c. 15 a. d. 27 a.
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Did the proton move into a region of higher potential or lower potential? did the proton move into a region of higher potential or lower potential? because the proton is a negative charge and it accelerates as it travels, it must be moving from a region of higher potential to a region of lower potential.because the proton is a negative charge and it accelerates as it travels, it must be moving from a region of lower potential to a region of higher potential.because the proton is a positive charge and it slows down as it travels, it must be moving from a region of higher potential to a region of lower potential.because the proton is a positive charge and it slows down as it travels, it must be moving from a region of lower potential to a region of higher potential.request answerpart bwhat was the potential difference that stopped the proton? express your answer with the appropriate units.î”v î” v = nothingnothingrequest answerpart cwhat was the initial kinetic energy of the proton, in electron volts? express your answer in electron volts.ki k i = nothing ev request answerprovide feedback
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Ethanol has a heat of vaporization of 38.56 kj/mol and a normal boiling point of 78.4 c. what is the vapor pressure of ethanol at 14 c?
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The impulse response for an unstable LTI system is given as: h(t) = 24 uſt) – e' u(t). For a feedbac...
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