E2.3 What should be the area of the parallel plates to measure a capacitance of 1 F, if the separation between the plates is 1 mm. Estimate roughly. Area ..m?.

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Chapter1: Units, Trigonometry. And Vectors
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In these experiment, you will be analyzing the parallel plate capacitor which is represented below. The
area of the capacitor and the separation between the plates are adjustable. The capacitance of the setup
can be calculated from: C = Kair€oh × L/d. In the setup, you will analyze dependance of C on Area, and
on d. Area will be adjusted by changing the length L.
HINT: Recall that K = 1.00059 ~ 1, and ɛo = 8.85 x 10-12 F/m (C²/Nm2).
|CAUTION:
You will be reading the capacitance value by using a multimeter.
• Arrange the scale of the multimeter to the smallest possible scale.
• Before each reading, always discharge the capacitor by connecting the plates with a
wire.
Transcribed Image Text:In these experiment, you will be analyzing the parallel plate capacitor which is represented below. The area of the capacitor and the separation between the plates are adjustable. The capacitance of the setup can be calculated from: C = Kair€oh × L/d. In the setup, you will analyze dependance of C on Area, and on d. Area will be adjusted by changing the length L. HINT: Recall that K = 1.00059 ~ 1, and ɛo = 8.85 x 10-12 F/m (C²/Nm2). |CAUTION: You will be reading the capacitance value by using a multimeter. • Arrange the scale of the multimeter to the smallest possible scale. • Before each reading, always discharge the capacitor by connecting the plates with a wire.
E2.3 What should be the area of the parallel plates to measure a capacitance of 1 F, if the separation
|between the plates is 1 mm. Estimate roughly.
Area =
.m².
Transcribed Image Text:E2.3 What should be the area of the parallel plates to measure a capacitance of 1 F, if the separation |between the plates is 1 mm. Estimate roughly. Area = .m².
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