Question answer both questions plz thank you so much 3. Calculate the first derivative equation system for the vector loop illustrated in Figure P.2.2. Consider only angles a, a, and a, to be time-dependent. 2 Vzera2+62) Vzela3+03) imaginary axis Veilal+01) V4e1(04+04) Vje (60) 0 real axis Figure P.2.2 Vector loop (5 vectors) in 2-D complex space 4. Calculate the second derivative equation system for the vector loop equation solution from Problem 3. Consider only angles Q,, Q2, az and a, from Problem 3 to be time-dependent.

LJWCAS The Asker · Mechanical Engineering

answer both questions plz thank you so much

Transcribed Image Text: 3. Calculate the first derivative equation system for the vector loop illustrated in Figure P.2.2. Consider only angles a, a, and a, to be time-dependent. 2 Vzera2+62) Vzela3+03) imaginary axis Veilal+01) V4e1(04+04) Vje (60) 0 real axis Figure P.2.2 Vector loop (5 vectors) in 2-D complex space 4. Calculate the second derivative equation system for the vector loop equation solution from Problem 3. Consider only angles Q,, Q2, az and a, from Problem 3 to be time-dependent.
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Transcribed Image Text: 3. Calculate the first derivative equation system for the vector loop illustrated in Figure P.2.2. Consider only angles a, a, and a, to be time-dependent. 2 Vzera2+62) Vzela3+03) imaginary axis Veilal+01) V4e1(04+04) Vje (60) 0 real axis Figure P.2.2 Vector loop (5 vectors) in 2-D complex space 4. Calculate the second derivative equation system for the vector loop equation solution from Problem 3. Consider only angles Q,, Q2, az and a, from Problem 3 to be time-dependent.
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Sol. Given:longrightarrow_(" real axis ")Applying wes loop:V_(0)e^(itheta_(0))+v_(3)e^(itheta_(3))=V_(1)e^(itheta_(1))+v_(2)e^(itheta_(2))firs dirivatim of the equation:we hroco e^(i theta)=cos theta+i sin theta(d)/( theta)(e^(ig))=ie^(i theta)quad(d^(2))/(dtheta^(2))(e^(i theta))=-e^(i theta ... See the full answer