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With any computational method that graphs transients, plot a graph of current "i" for 0<t<1 seconds, if v(0)=6v and i(0)=2A. No calculation is needed, just the current graph.
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- Question 1 A direct current (DC) of 4A flows into a previously uncharged 20 pF capacitor for 3 ms. Determine the voltage between the plates. O A. 500 V O B. None of the given answers O. 600 V O D. 200 V O E. 800 V O F. 300 VCalculate a-parameter for the - 30 MM w 40 MM 102Determine unknown quantities: 0.9 V- GT RT R₁30 R₂60 R3 1.50
- If the measured values of R1 = 323.1 Q, R2 = 324.2 Q and R3 = 324.7 Q, calculate the difference in measured R compared to your calculation of equivalent R in Ohms? KIT NO. 1PASCO EM-8622 SCIentfic CYRCUIT EXPERIMENT TENMA 72-7780 1079 A C Auto Range 6000 Counte True RMS Multimeter ANGE MAX/MIN RELA Hz/% DILIGHT SELECTIVR.C Hz% mA H Am Hz% ONCV 60A. CE A (10mviA) VOHZC ww COM FUSED FUB RIA direct current (DC) of 4A flows into a previously uncharged 20 uF capacitor for 3 ms. Determine the voltage between the plates. OA. 500 V O B. None of the given answers OC 600 V O D. 200 VCircuits 1 HW4 Q1
- Band 1 GR R y BU G GR BN G Band 2 R W V V GR BU R GR W BU Band 3 BN R BL S R R BL GO BL R Table 1 Resistor Color Codes and Measurements Band 4 GO 60 GO GO GO GO GO GO GO GO Band 5 Theoretical value R Plus Tolerance 8205% 8612 3 900±5% 40952 3705 27 2±5% 28-35 25-65 0.47±5% 0-493552 0.44651 71402 6800 ± 5% 5600 55880 82nt 5% 1-82±5% 86-1-22 1.892 R Minus Tolerance 39 150 40.952 56001 ± 540 5880 Measured Value 7792 8012 38542 26 0.45 6460 6630 53201 5570 77-92 80.5 #1.712 37.05~ 5320 2 1.82 39.25 5520 MAKE A CONCLUSION FOR THIS (8 SENTENCES ONLY) The content must be the connection of resistor color codes to tolerances and the relationship of the measured value to the theoretrical value• V = 6.77 Volts C4 C₁ The values of the components are as follows: C₁ = 2.39 μFarads C₂ = 4.99 μFarads C3 = 7.42 µFarads C4 = 9.69 μFarads CA CB Fill in all the values into the table below: Element C (μF) V (V) C₁ C₂ CC 2.39 4.99 7.42 9.69 C₂ + HF V C3 {HD X 5.68 C4 X X Q (μC) U (μ)One steradian represents (rad)^3 O 2rad O (rad)^2 O none O
- With reference to Figure 7 below, use nodal analysis technique to carry out the following: (a) Identify and label all the essential nodes on the circuit. (b) Determine the voltage at each node. (c) Determine the power dissipated in R2.www.resistorguide.com Temp. Coeff. (ppm/K) 250 (U) 100 (S) 50 (R) 15 (P) 25 (Q) 20 (Z) 10 (Z) 5 (M) 1(K) Color Signficant figures Multiply Tolerance Fail Rate (%) black x 1 x 10 x 100 x 1K х 10к x 100K x 1M x 10M x 100M х 1G x 0.1 x 0.01 Bad Вeer brown 1 (F) 2 (G) 0.1 0.01 Rots red 2. Our 3. orange yellow Young 4 0.001 0.5 (D) 0.25 (C) 0.1 (B) 0.05 (A) green blue Guts But 6. 6. 6. Vodka violet Goes 80 8. grey white gold silver Well 9. 9. 3th digit only for 5 and 6 bands 5 () 10 (K) 20 (M) Get Some Now! none 6 band 3.21kN 1% 50ppm/K 5 band 5212 1% 4 band 82kN 5% 3 band 3302 20% gap between band 3 and 4 indicates reading direction to their values. A. Enumerate the five (5) different types of resistors according to construction. Discuss the functions of each resistor. (include the actual picture of the component). Resistance Value First Color Second Color Third Color 100 2 620 0 1100 4 30 KO 19 KO B. Fill in the blanks with the values of the resistors corresponding to the colors. 300 0…R3 100k R2 Vi V2 10 20k Vo V1 Ú1 SINE(0 1.414 10k) V3 10