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- 10. A 2 kW kettle containing 1.7 litres of tap water at 15°C is plugged in to the mains (220 V). The electricity tariff is currently 35c per kW h. Calculate: a) the strength of the current drawn by the kettle: b) the amount of energy required to "boil the kettle"; c) how many minutes it takes to boil the water; d) the cost of bringing the water to the boil.2. A Wheatstone Bridge is used to condition the output from a strain gauge with a base resistance of 250 Q. The resistors in the bridge match the strain gauge base resistance. The gauge factor of the strain gauge 2=1.5 and it is firmly affixed to the pillar of a suspension bridge that is manufactured from mild steel (E=210 GPa). Assuming that the average stress in the pillar is 482 MPa and the supply voltage is 15 V, calculate the output voltage from the Wheatstone Bridge.Q2. Determine Vo for the clipper circuit shown in Figure 2 and draw the corresponding output waveform. Vin Si h Vo 20 V -20 V Vin Figure 2 2.2 ΚΩ www
- 1. What does the engine load sensor mean? What are the electrical lines of this sensor, explain it? p 4:56 /3) A power supply is used to pass a current of 1 A at 6 V through a mass of copper of 255 grams for 3 minutes. During this time the mass of copper is observed to rise by 10° C. (co-0.093 cal/g°C) (Lab 10, Joule Heat). a) calculate the electrical energy in J expended by the circuit b) calculate the heat energy delivered to the Cu in calories c) calculate the ratio of answer a) to that of b) d) calc. the percentage difference in c). Use a theoretical value of 4,18 J/cal. %3Dtus or W tus (15%) Problem 1: Consider a wire made of copper with conductivity 6.0 x 107 02¹m¹, which has a circular cross-section of radius 0.17 mm. In a particular circuit, this wire carries a current of 2.5 A. Fequiere, Vanessa-vanessa fequiere@uconn.edu Completed Completed @theexpectta.com-Arackmg 10:2ZEN BALIMISTADA so may result in terminaisou your Expen TNI A 50% Part (a) What is the electric field, in volts per meter, inside this wire? E=1 sin() cotan() atan() cosh() cos() asin() acotan() tanh() Degrees Submit tan() acos() sinh() cotanh() Radians Hint E ( + VO Feedback 7 8 9 4 5 6 1 2 3 131 0 I give up! Feedback: 0% deduction per feedback. olanens sharing website is strictly forbidden. Doing Grade Summary Deductions Potential 0% 100% Submissions Attempts remaining: S (0% per attempt) detailed view Hints: 2% deduction per hint. Hints remaining: 1 50% Part (b) If we replace this wire with a gold one of the same size, with conductivity 4.1 x 1072 m, what will the electric field in…
- 1. Set up the network (circuit) as in Figure 4 with circuit parameters as indicated. 2. Keeping both sources active in the circuit. Measure V, the three currents I, , and I; and put the measured values in Table ( Procedure: It Vo Circuit Parameters I3 12 V VS1 Vs2 Ri I2 R2 10 V Vs2 R3 4.7 k2 5.6 k2 R3 10 k2 Fig. 4 R RR 3.3.) Determine the thermal coefficient of resistance of copper at 50 Degree Celsius, then use this value to determine the resistance of copper at 170 Degree Fahrenheit if the resistance of this copper wire at 50 Degree Celsius is 50 ohms. The thermal coefficient of resistance of copper at 0 Degree Celsius is 0.004264/Degree celsius.9. Consider a wire with two sections of different diameters. a) Is I1 less than, greater than, or equal to I2? • A. I 2 • C. I1 = 12 b) Is J1 less than, greater than, or equal to J2? • A. Jj J2 • C. Jį = J2 c) Is Ej less than, greater than, or equal to E2? . А. Ej Е2 • C. Ej = E2 d) Is va,1 less than, greater than, or equal to va,2? . А. Va,1 Vd,2 • C. vd,1 = Vd,2
- 3. Write down the equation for V for this RC circuit and describe the relationship between the variables. For example, if C remains constant and R is larger, the potential difference changes (faster/slower/stays the same). 4. Write another sentence for V vs. C if R remains constant and C is increased.3 C WALL P 1B3 эко 37° уторе Draw the FBD and set the equations for PAB RE RC2. A 0.30-m-long metal bar is moving to the left at constant speed of 20 m/s perpendicular to a uniform 2.0 T magnetic field. The bar rides on parallel metal rails connected through a 6.00 resistor, so the apparatus makes a complete circuit, as shown in the figure below. Ignore the resistance of the bar and the rails.