Determine the range of capacitance

In summary, FM radio stations use frequencies from 88.0 to 108 MHz to broadcast their signals. To pick up all the radio waves, a range of capacitance values is needed, with the smaller value being 4.303e-12 and the larger value being determined by solving for the high frequency.
  • #1
zeshkani_usa
5
0

Homework Statement



FM radio stations use radio waves with frequencies from 88.0 to 108 MHz to broadcast their signals. Assuming that the inductance in an LC-tuned circuit has a value of 7.60 x 10-7 H, determine the range of capacitance values that are needed so the antenna can pick up all the radio waves broadcasted by FM stations. Let your answer to (a) be the smaller of the two values that define the limits of the range, and (b) be the larger of the two.

Homework Equations



f = 1/ ((2pi)sqrt(LC))

The Attempt at a Solution



i used the euqation above converted the MHz to Hz and tried to Solve first for the Low frequency 88 for C but its the wrong answer this is how it looks for C

C = (sqrt(1/f2pi))/(L)
 
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  • #2
your equation:
C = (sqrt(1/f2pi))/(L) is wrong. You did some algebra errors... to get rid of the sqrt in your first equation, you need to square some things. I'd also do BOTH calculations (for high and low frequency)... just to be sure you get the low and range correct (if you are using a homework system that might ask for the high end and low end separately). High frequency actually corresponds with LOW capacitance -- the capacitor gets filled up and discharges more quickly... the system isn't as sluggish.
 
  • #3
C = 1/((f^2)(2pi^2)L)
 
  • #4
C = 1/((8.8e7)^2(2pi)2(7.60e-7))
C = 4.303e-12
 

Related to Determine the range of capacitance

What is capacitance?

Capacitance is the ability of a system to store an electric charge. It is measured in units of Farads (F) and is represented by the symbol C.

How do you determine the range of capacitance?

The range of capacitance can be determined by using a digital multimeter, an instrument that can measure capacitance. Start by setting the multimeter to the capacitance measurement mode and then connect the leads to the capacitor. The range of capacitance will be displayed on the multimeter.

What factors affect the range of capacitance?

The range of capacitance can be affected by several factors such as the material of the capacitor, the distance between the plates, the surface area of the plates, and the dielectric constant of the material between the plates.

Can the range of capacitance be changed?

Yes, the range of capacitance can be changed by altering the factors that affect it. For example, by changing the distance between the plates or using a different dielectric material, the capacitance range can be increased or decreased.

Why is it important to determine the range of capacitance?

Determining the range of capacitance is important in designing and using electronic circuits. It helps in selecting the appropriate capacitor with the required capacitance range for a specific application. It also helps in troubleshooting any issues related to capacitance in a circuit.

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