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Part A- Construct the circuit shown in Figure 1 below using Virtual Breadboarding in Multisim.
Figure 1
Part B- Calculate the following values:
a. VBBb. VEc. IEd. VC
Part C- Measure the following values:
e. VBBf. VEg. IEh. VC
Part D- Short the Resistor R2 and predict the values in Part C and justify your answer.
Part E- Replace the transistor to a PNP transistor and the VCC to -12 V. Repeat Part A through Part C.
Part F- Based on your observation and measurement of the components above, describe your conclusion about this the circuit in Figure 1.
In cylindrical coordinates ,let D = (pa + za )/[4pie(p^2+z^2)^1.5].Determine the total flux leaving: p z a) The infinitely long cylindrical surface p=7; b) the finite cylindrical,p=7,l z l less than equal to 10.
Sketch the equivalent circuit and phasor diagram for the no-load conditions and, assuming operation is in the step down mode, determine (a)the exciting current; (b)the core loss component of the exciting current; (c)the magnetizing current; (d)the..
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Assume that we make an enhancement to a computer that improves some mode of execution by a factor of 10. Enhanced mode is used 50% of the time, measured as a fraction of the execution time when the enhanced mode is in use.
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