the circuit below, given that R1=102, R2=102, R3=5Q and R4=10 Q. Answer the following estions: a) [ b) Calculate the equivalent resistance for the circuit below. lculate the current in R1, show the direction of the current in R1 and the rity of the voltagoe across R1. un words, how we can
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- The circuit below(left) displays a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the circuit below(right), the terminal voltage of each of the battery-resistor combination is VT = 1.5 volts. Find the current passing through R1, R2, R54. Consider the following circuit. 3R SR 2R a) How many distinct currents flow in this circuit? The four loops shown are labeled A - D, and the junctions are labeled a - d. b) If we had to solve for these currents, how many independent equations would we need? c) Which loops and/or junctions would you choose, if you had to solve for the currents? (Many answers are possible here.) This diagram shows several different loops and junctions in the circuit. d) Set up a system of equations that would allow you to solve for the currents.Find the potential difference between point a and point b for the situation shown below. Here ₁ = 12.0 V, E₂ = 7.77 V and R₁ = 4.33 №, R₂ = 6.44 , and R3 = 2.28 2. Va - Vb = R₂ E2 b R3 www R₁ &₁
- I did a physics lab and got some values. I want to check them theoretically to see how the results differ. From this diagram, answer the following questions: The laws to be verified included the conservation of current in a node, the addition of potentials for components in series, and the addition of currents for components in parallel. The data : R1: 1094 ohm R2 : 998 ohm R3: 1094 ohmR4: 25 ohm Source 1 : 5 V Source 2 : 1.5 V4.-For-labeled currents, draw an arrow to show the direction of the actual positive current. For labeled voltages, circle the node that is at the actual highest potential. Note that the positive and negative signs of the voltage represent the polarity of the probes of a voltmeter connected to the device. The value shown is the reading on the voltmeter. (segment of wire) 2A -2A -5A 2.de 3A TA Cov E 5V 12V + 3V -10V -201(a) Identify the type of circuit in Figure 4. Determine its functionalities and find the appropriate mathematical equation. Sig_1 Sig_2 Sig_3+ Sig_4 Iin. Iin. Iin Iin GND www.5 R5 www R4 www R3 ww R2 ww R1 Feedback Resistor ลบ Figure 4 Iout VOUT ◆ BU
- For the circuit shown ,IC2 = 1mA ,VCE1 = 2V , and VCE2 = 8V 1. The value of RC is equal to ohm 2. The value of R1 is equal to ohm 3. The value of R2 is equal to ohmFor the circuit of shown in Figure, find the following quantities: a. The circuit current, I. b. The total resistance of the circuit, RT. c. The value of the unknown resistance, R. d. The voltage drop across all resistors in the circuit. 3k0 4 ka E- 130 V P- 100 mw1 ka R.Q6 Given: R₁ R₁ R₂ R3 - 1190 (Ohm) Find the equivalent resistance Req. REQ = ?? Q (Ohm) R₂ == 108 02 (Ohm) R3 = 5968 2 (Ohm)
- Estimate voltage E2 when E1=90sin2400t V, R1=R2=20 ohms, L1= L2=3mH and M=0.15mHQ1- Determine the range of adjustable resistance, R. for a Wheatstone bridge circuit as shown in Figure Q1 that can measure voltage at range between 0 to 10 V. The voltage source is 50 V and fixed resistances, R1 = R2 = R3 = 1 K ohm, next, determine the range of current can be measured by using galvanometer with internal resistance is 200ohmFor the circuit of shown in Figure, find the following quantities: a. The circuit current, I. b. The total resistance of the circuit, RT. c. The value of the unknown resistance, R. d. The voltage drop across all resistors in the circuit. 3 k0 4 ka +E-130 V P-100 mW1 ka R