Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Pls solve this question correctly in 5 min i will give u like for sure.arrow_forwardConvert the decimal number 24710 to base 2, base 8, and base 16. Convert the following decimal numbers to binary: 12.34510, 10310, 45.77810, and 998110. Convert the following binary numbers to decimal: 111100012, 001011012, 10100012, and 10011102. Convert the following octal numbers to decimal: 7258, 15738, 46238 and 22148. Convert the following hexadecimal numbers to binary: FACE16, BAD16 and 9CEB16.arrow_forward1. (a) An emitter follower as shown below should provide an input impedance of 2 k with a gain of 0.75. Determine the required bias current (collector current) and RE, assuming ß= 80 and V₁= ∞o. (b) How does the gain change if considering the internal resistance Rs (not shown in the figure) of the signal source of 500 ? Vcc=2.5 V J VinQ₁ WI RE Voutarrow_forward
- A-Design a two-stage BJT amplifier as shown in the figure with coupling capacitors such that the 3 dB low frequencies associated with each stage are equal to 20 Hz. The transistor parameters are: ß = 200 and 1=5.21KQ. Vcc=5V Rc1= 3.5 kQ2 SR₁ = 3.55 ΚΩ R₁ = 55 k Ri R₂ = 31 kQ2 CCI REL= C1kQ2 HH Cc₂ www Ri R₂ = 31kQ2 RE2= ΣΙΚΩarrow_forwardConsider the integrating amplifier circuit in Figure 2. Using nodal analysis, derive an expression for vout for the integrating amplifier. In the circuit in Figure 2, exchange the positions of the 0.1uF capacitor and the 5k resistor. a. Use nodal analysis to generate an expression for vout. b. Using this expression, explain what function this circuit performs on an input signal.arrow_forwardsome one solved it but, I think there is a mistake. can you please just solve number 4 and 5arrow_forward
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