)) Thermistors are used to measure the temperature of bodies. Thermistors are based on materials' change in resistance with temperature. To measure temperature, manufacturers provide you with a temperature vs. resistance calibration curve. If you measure resistance, you can find the temperature. A manufacturer of thermistors makes several observations with a thermistor, which are given in Table. Determine the temperature corresponding to 702.8 ohms using Lagrange polynomial interpolation. Show your calculations clearly. Temperature vs. Resistance 55 50 R (ohm) T (°C) 45 40 1101.0 911.3 636.0 451.1 25.113 30.131 40.120 35 30 50.128 25 20 400 500 600 700 800 900 1000 1 100 1200 Resistance (ohms) Temperature (°C)
)) Thermistors are used to measure the temperature of bodies. Thermistors are based on materials' change in resistance with temperature. To measure temperature, manufacturers provide you with a temperature vs. resistance calibration curve. If you measure resistance, you can find the temperature. A manufacturer of thermistors makes several observations with a thermistor, which are given in Table. Determine the temperature corresponding to 702.8 ohms using Lagrange polynomial interpolation. Show your calculations clearly. Temperature vs. Resistance 55 50 R (ohm) T (°C) 45 40 1101.0 911.3 636.0 451.1 25.113 30.131 40.120 35 30 50.128 25 20 400 500 600 700 800 900 1000 1 100 1200 Resistance (ohms) Temperature (°C)
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
Transcribed Image Text:)) Thermistors are used to measure the temperature of bodies. Thermistors are based on materials' change
in resistance with temperature. To measure temperature, manufacturers provide you with a temperature vs.
resistance calibration curve. If you measure resistance, you can find the temperature. A manufacturer of
thermistors makes several observations with a thermistor, which are given in Table.
Determine the temperature corresponding to 702.8 ohms using Lagrange polynomial interpolation. Show your
calculations clearly.
Temperature vs. Resistance
55
50
R (ohm) T (C)
45
40
1101.0
25.113
30.131
40.120
911.3
35
636.0
30
451.1
50.128
25
20
400 500
600 700
Resistance (ohms)
900 1000 1 100 1200
800
Temperature (°C)
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