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Question 1 A current is being supplied from a source with a peak voltage of 23.0 V. What is the current that is being supplied
Question 1 A current is being supplied from a source with a peak voltage of 23.0 V. What is the current that is being supplied when the frequency is very large? R1 : 64.0 0, R2 = 15.0 0. L = 40.0 mH and C: 320 pF. Current due to very large frequency: Question 2 A series RLC circuit is connected to an oscillator with an rms voltage of 33.0 V, and consists of a 50.0 mH inductor, a 3.30 nF capacitor, and a 120. 0 resistor. If to 2 too, what is the power supplied to the circuit? : Question 1 B C D E The figure provided displays the viewing screen in a double-slit experiment. Noting that fringe C is the central maximum, what will happen to the fringe spacing if the spacing between the slits is decreased? O The fringe spacing will remain constant. O The fringe spacing will increase. O The fringe spacing will decrease. Question 2 B C D E The figure provided is the interference pattern seen on a viewing screen behind 2 slits. Which of the following is true if the 2 slits were replaced by 35 slits having the same spacing d between adjacent slits. O The number of fringes on the screen increases. The number of fringes on the screen decreases. O The number of fringes on the screen remains constant.Question 3 Where is an image located if a concave mirror of focal length fforms an image of the moon? {3' Almost exactly a distance fin front of the mirror. {3' At the mirror's surface. (23' Almost exactly a distance fbehind the mirror. 0 At a distance behind the mirror equal to the distance ofthe moon in front of the mirror. Question 4 A concave mirror is setup so that it brings the sun's rays to a focus in front of the mirror. Which of the following will be true of the sun's rays if the mirror is submerged in a swimming pool but still pointed up at the sun? (3 The sun's rays will be focused at the same distance from the mirror. 0 The sun's rays will be focused nearer to the mirror. {23' The sun's rays will be focused farther from the mirror
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