With respect to state space modelling, given the system (electrical system) below, determine the minimum number of state variables. + v(t) RI a ○ a. 4 O b. 5 O c. 3 O d. 6 w R2
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- AND AGAIN...LETS GO AGAIN... I CAN NOT READ IMAGES.. STOP RESPONDING WITH IMAGES/GRAPHICS. IS THAT MORE COMPLICATED THAN THIS MATH? PLEASE RESPOND IN TEXT...THE LITERAL CHARACTERS YOU ARE READING RIGHT NOW. UNIVERSITY OF PHYSICS 24.55 In (Figure 1), C1C1C_1 = 3.50 μFμF and VabVabV_ab = 160 VV. The charge on capacitor C1C1 is 150 μCμC and the charge on C3C3 is 450 μCμC. Figure 1 of 1 Part A What is the value of the capacitance of C2C2? Express your answer with the appropriate units. Part B What is the value of the capacitance of C3C3? Express your answer with the appropriate units. THE FIGURE DESCRIPTION GIVEN: A circuit consists of 3 capacitors.The circuit has endpoints A and B, and is divided into 2 parts by point D. C_1 and C_2 are connected in parellel between points A and D. Capacitors c_3 is located between points B and D. THAT IS IT. you literly don't get ANY MORE INFORMATION THAN THAT. So don't reject me again for that lie and please don't…please answer with explanation.. answer it ASAP..please detailed equation solution
- Find a mechanical equivalent of the linear electrical circuit model shown below for respiratory mechanics and explain how the mechanical model is equivalent to the electrical model.ii. Use Kirchhoff's Current Law to mathematically write an expression for the figure below 1₂ 13Obtain the state-space model of the electrical system given below. Take the coil current and capacitor voltage as state variables and the voltage eo as the output variable.
- What are the primary dimensions of electric voltage (E)? (Hint: Make use of the fact that electric power is equal to voltage times current.) When performing a dimensional analysis, one of the first steps is to list the primary dimensions of each relevant parameter. It is handy to have a table of parameters and their primary dimensions. We have started such a table for you in which we have included some of the basic parameters commonly encountered in fluid mechanics.add to this table. You should be able to build up a table with dozens of parametersA5Explain the significance of Kirchhoff's laws in electrical engineering. Please don't use AI solution
- What are the biggest unsolved problems in electrical engineering that we face nowadays? Make a list of problemReference 7 segment display: Solve for the segments: "d, e, and f." Show your work 1. KMAPs 2. Reduced equation to lite up the segment 3. Describe the operation of Lab 12 4. If you were to add a 4th seven-segment, Describe your design process.A Stereo uses a 12 V DC power supply. At full volume, a maximum current of 1.4 A is drawn from the power supply. At minimum volume, the current drops to 200 mA. (a) You can simply consider the stereo as the load resistor RL. Calculate the range of R₁ at full volume and minimum volume. (b) Design a full-wave rectifier power supply using a 9.52:1 transformer. Assume that the outlet is 120 Vrms @ 60 Hz. Further assume that the diode turn-on voltage VD(on) is 0.7 V. Pick the value of C₁ such that vo has a maximum ripple of 1 Vp-p. Solve for the average value of v. = V. (note that this may be greater than 12 V) and iD(ave) = ID. (c) Add a series resistor to the secondary to limit the maximum surge current to 10 A if the secondary winding resistance of the transformer is 0.4 ohm. (d) Using PSPICE (with Is = 1 nA and n = 1.3 for the diodes), perform a transient simulation (.tran) and plot vo and Io(surge) for your max. and min. values of R₁. Make sure your transient simulation is long enough…

