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Calculate i1, i2, i∆, and v∆. Show all work please :)
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- Consider the circuit below. The frequency of oscillation is: www OF R₂ 1,0 ΚΩ C₁ 0.015 μF R₁ 1.0 ΚΩ 11 L Q₁ 2N5458 C₂ 0.015 μF 10.6 kHz 1.94 kHz 19.4 kHz 15.9 kHz www R₁ 10 ΚΩ R3 820 02 ww R₁ 10 ΚΩ ovour D₁ IN914 C3 1.0 με+5V VDO EN Xtal 8ה 7 +5V Freq1 HGND | GND х Mhz Sensor0 crystal Freq26 5 Vss Out 04 PRE Xtal 1k Output HA7210IP 4 CLK CLR SN74HC7491 GND 0.01 μ GND +5V 4 +5V +5V +5V OE O/P3 0. 1µF | 47µF GND SG351P |2 x MHz GND GND Consider the Quartz Crystal Microbalance Sensor shown above, with crystal resonant frequency, x = 3.3 Mhz. You are given the following values: Active crystal area = 1.6 cm², and the change in frequency = - 10 Hz Calculate the change in mass, Am in nano gram, up to 2 decimal places. Answer:Consider the following circuit diagram: 15 ΚΩ 1V ww 7.5 ΚΩ Μ www 15 ΚΩ al (Β) Rm = 22.5 kΩ and I Ό O 7.5 ΚΩ Μ 15 ΚΩ = -66.66 με (C) Rm = 22.5 kΩ and I 0 (D) Rm =15 kΩ and I = 33.33 MA = -33.33 με θα 7.5 ΚΩ www. RTh Σ15kΩ {15 = OV Find Thevenin resistance, Ry, and output current, I of the circuit. (A) Rm =15 kΩ and I = 66.66 MA | με Ο 23 Σ15 :15 ΚΩ 15 ΚΩ Μ w +15 V -15 V 37.5 ΚΩ
- Find T 0.5 ms 40 92 www www 892 160 92 20 mH wwwFor the circuit shown, what is the Norton equivalent current, IN? j3 N 12 0 2452.6° A -j5 N (+2) 14430° V O 3.08452.6° A O 3.29/39.5° A O 2.0252.6° A O 1.15/39.5° AOUTPUT VOLTAGE (V) 2.0 1.8 1.6 1.0 0.8 0.6 0.2 0 <-50 a. TMP35 b. TMP36 c. TMP37 +Vs = 3V -25 0 50 25 TEMPERATURE (°C) 75 Figure 6. Output Voltage vs. Temperature 100 b 125 00337-007 Using the appropriate curve, develop a linear equation for the output temperature as a function of voltage.
- Useful constants: k=9.00×109 N.m2/C2 ε0= 8.85×10-12 C2/N.m2 µ0=4π×10-7 T.m/A mp=1.67×10-27 kg me=9.11×10-31 kg e=1.6×10-19 C g=10.0 m/s2 --------------------What is the output voltage (Vout)? What is the ripple voltage of the outpu Use the formula for the ripple voltage, VR = 1 / fC, where Idenotes current, frequency, and C capacitance.< 1.5 Vrms 2 KHz 3 2 Vcc +15 V 318 4 VEE -15 V C -6.8 RL 1K2 VoutWhat charging RC circuit has a time constant of A. 1 B. 2 C. 3 D. 4 E. 5 O C ΟΕ OA 1. OB OD HI HHH 2. TT 12R 5. =RC t 3. 12G 1203 R}
- A 10 µF, a 15µF, and a 100µF capacitor are connected in parallel across 50V source. Determine the following: Total capacitance. Write the answer in µF G M k m Vμ K n Р 10⁹ 106 10³ 10-³ 10-6 10-⁹ 10-12 1 000 000 000 1 000 000 1 000 0,001 0,000001 0,000000001 0,000000000001What is the equivalent inductance between a and b for the circuit shown in the figure: 4₁ L3 9 mH 23.8 mH 26.8 mH 24.8 mH 25.8 mH L₂ 56 mH 6.5 mH L4 30 mH L5 42 mHFor the circuit shown in Figure Find Rc. RE and RB iF +he Vcc 12 volt Vcc=12 V VCE = 4V Ic=HMA RC RB B = 60 Silicon tran Sisten RE