According to its design specification, the timer circuit delaying the closing of an elevator door is to have a capacitance of 32.0 μ F between two points A and B. When one circuit is being constructed, the inexpensive but durable capacitor installed between these two points is found to have capacitance 34.8 μ F . To meet the specification, one additional capacitor can be placed between the two points, (a) Should it be in series or in parallel with the 34.8- μ F capacitor? (b) What should be its capacitance? (c) What If ? The next circuit comes down the assembly line with capacitance 29.8 μ F between A and B. To meet the specification, what additional capacitor should be installed in series or in parallel in that circuit?
According to its design specification, the timer circuit delaying the closing of an elevator door is to have a capacitance of 32.0 μ F between two points A and B. When one circuit is being constructed, the inexpensive but durable capacitor installed between these two points is found to have capacitance 34.8 μ F . To meet the specification, one additional capacitor can be placed between the two points, (a) Should it be in series or in parallel with the 34.8- μ F capacitor? (b) What should be its capacitance? (c) What If ? The next circuit comes down the assembly line with capacitance 29.8 μ F between A and B. To meet the specification, what additional capacitor should be installed in series or in parallel in that circuit?
Solution Summary: The author explains that the addition capacitors must be connected in series or parallel combination with the 1st capacitor.
According to its design specification, the timer circuit delaying the closing of an elevator door is to have a capacitance of 32.0 μF between two points A and B. When one circuit is being constructed, the inexpensive but durable capacitor installed between these two points is found to have capacitance 34.8 μF. To meet the specification, one additional capacitor can be placed between the two points, (a) Should it be in series or in parallel with the 34.8-μF capacitor? (b) What should be its capacitance? (c) What If? The next circuit comes down the assembly line with capacitance 29.8 μF between A and B. To meet the specification, what additional capacitor should be installed in series or in parallel in that circuit?
Will you please walk me through the calculations in more detail for solving this problem? I am a bit rusty on calculus and confused about the specific steps of the derivation: https://www.bartleby.com/solution-answer/chapter-3-problem-15e-modern-physics-2nd-edition/9780805303087/7cf8c31d-9476-46d5-a5a9-b897b16fe6fc
please help with the abstract. Abstract - This document outlines the format of the lab report and describes the Excel assignment. The abstract should be a short paragraph that very briefly includes the experiment objective, method, result and conclusion. After skimming the abstract, the reader should be able to decide whether they want to keep reading your work. Both the format of the report and the error analysis are to be followed. Note that abstract is not just the introduction and conclusion combined, but rather the whole experiment in short including the results. I have attacted the theory.
Using the Experimental Acceleration due to Gravity values from each data table, Data Tables 1, 2, and 3; determine the Standard Deviation, σ, mean, μ, variance, σ2 and the 95% Margin of Error (Confidence Level) Data: Ex. Acc. 1: 12.29 m/s^2. Ex. Acc. 2: 10.86 m/s^2, Ex. Acc. 3: 9.05 m/s^2
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