As in Example 27.2, consider a power supply with fixed emf ε and internal resistance r causing current in a load resistance R. In this problem, R is fixed and r is a variable. The efficiency is defined as the energy delivered to the load divided by the energy delivered by the emf. (a) When the internal resistance is adjusted for maximum power transfer, what is the efficiency? (b) What should be the internal resistance for maximum possible efficiency? (c) When the electric company sells energy to a customer, does it have a goal of high efficiency or of maximum power transfer? Explain. (d) When a student connects a loudspeaker to an amplifier, does she most want high efficiency or high power transfer? Explain.

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Chapter 27 Solutions
PHYSICS F/ SCI +ENGRS W/ WEBASSIGN ACCES
- 3aarrow_forward44 please help with the this.arrow_forward4a Which of the following values COULD NOT be a magnitude? Choose all that apply. 626 0 -0.806 8.63 -48.5 72 131 156 4b Px = -1248 & Py = 261. Determine P.P = Qx = -1540 & Qy = 375. Determine Q.Q = 4c. T = 1105 & Ty = 425. Determine the two possible values for Tx. 4d. Uy = -38. Which of the following COULD NOT be the value of U? Choose all that apply. 10 70 72 31 47 0 75 38 4e. R has a magnitude of 165. Which of the following COULD be Rx? Choose all that apply. 165 -171 155 0 -156 -165 172 -130arrow_forward
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