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2.Slide the Receiver one or two centimeters along the Goniometer arm to obtain a maximum meter reading.Record the Receiver position along the metric scale of the Goniometer arm Initial Position of Receiver Figure 3.2 Equipment Setup 3.While watching the meter,slide the Receiver away from the Transmitter.Do not stop until the Receiver passed through at least 10 positions at which you see a minimum meter reading and it returned to a position where the reading is a maximum.Record the new position of the Receiver and the number of minima that were traversed. Minima Traversed Final Receiver Position= 4.Use the data you have collected to calculate the wavelength of the microwave radiation. λ= 5.Repeat your measurements and recalculate Initial Position of Receiver Minima Traversed Final Receiver Position= 九= Questions 1.Use the relationship velocity =y to calculate the frequency of the microwave signal (assuming velocity of propagation in air is 3x10 m/sec). (v=the expected frequency of the microwave radiation-10.525 GHz)8 2. Slide the Receiver one or two centimeters along the Goniometer arm to obtain a maximum meter reading. Record the Receiver position along the metric scale of the Goniometer arm. Initial Position of Receiver =_______________________________ . 3. While watching the meter, slide the Receiver away from the Transmitter. Do not stop until the Receiver passed through at least 10 positions at which you see a minimum meter reading and it returned to a position where the reading is a maximum. Record the new position of the Receiver and the number of minima that were traversed. Minima Traversed = Final Receiver Position = 4. Use the data you have collected to calculate the wavelength of the microwave radiation.  =_______________________________ 5. Repeat your measurements and recalculate  Initial Position of Receiver =_______________________________ Minima Traversed =_______________________________ Final Receiver Position =_______________________________  =_______________________________ Questions 1. Use the relationship velocity = v to calculate the frequency of the microwave signal (assuming velocity of propagation in air is 8 310 m/sec). (v = the expected frequency of the microwave radiation -10.525 GHz)
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