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- Can you please show how to solve this problem? Thank you.Don't use chatgpt and please be quickVcc=15V 5. For the circuit given in Figure 4, find the values of Re and R, where Icsat = 1.5mA and Vin is a square wave signal switching between 0V and 10V. Draw the vo as a function Rc3 fov. B = 300 ¡VBE(on)=0.7V RB Vin of time. Figure 4. Switching circuit.
- (Indicates a review question, which means it requires only a basic understanding of the material to answer. Questions without this designation typically require integrating or extending the concepts presented thus far.) . Aircraft equipped with powerful radar units are forbidden from using them when parked on the ground near people. Explain why this is so.Problem H a) Determine the closed-loop 3-db bandwidth. The op amp has a unity-gain frequency of 0.8 MHz. b) Determine the frequency at which the gain is a) -2db b)-4db) o Va O Vb + Ra $ Rb Rd ww V+ Vout O R₁ 1k Ra 4k Ra R₁ 1k 30k Rb 4k R₁ 100ka) How does properly documenting procedures using BPMN and system requirements using UML help Sunset Graphics? (b) How might these tools help your current, past or future workplace?
- Question! ) By using a pproprete circuit, explain the currents flow for the common emitter N PN bransis torin activenode- 6) ABJT amplifier's eireuit of figure 16Ci) has the autput characteristics as shown in Gig wre I6) Cis)] .Givera VeE - 0.7V,and REı= Rę2 from the DC load line on the output eharacteristics showen in figure lb Cii), determhe RELI REZ B and Ry of BJT amplifier's corcuit in figure Ibl) 8tate all assump tions made in, your caleulaion +Vcc Rcz0.6k62 RB ZREZ (B-40MA IB2 30MA 13=25MA lD-20MA -VEE 18210MA 18 SMAIf a signal passing through a gate is inhibited by sending a low into one of the inputs, and the output is HIGH, the gate is ?Reviecw V: 120 coS LIO00) RLC circuits R= 6r L=2 mH C: 5000 uF w= 1000: 21 f Find I V: Vmax cos (wt) * Find +he reson ace frequency I max- vmax Iそ for the same circuit elements. Velt) ' - Xe I Lt) z: Je + (wt- t)* 2. Velt)=115.2.coŚ(ioot ti8.2) Ø tan (wa. R I- I max cos (wt +Ø)