2. Figure 2 shows a pressure transducer, using a clamped diaphragm. Strain gauges 2 and 4 are meant to measure the tangential strain while gauges 1 and 3 measure the radial strain. Resistance of each gauge = 1202, gauge factor = 2, radius R = 7 cm, ro = 1 cm and r; = 6cm. Thickness t of the diaphragm Poisson's ratio v = 0.25. Find the open circuit sensitivity in mV/Pa. = Imm. Young's modulus E = 2.07 ×10$ N/mm?. 2 Output 6V

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2. Figure 2 shows a pressure transducer, using a clamped diaphragm. Strain gauges 2 and 4
are meant to measure the tangential strain while gauges 1 and 3 measure the radial strain.
Resistance of each gauge 1202, gauge factor = 2, radius R = 7 cm, ro = 1 cm and ri
6cm. Thickness t of the diaphragm
Poisson's ratio v = 0.25. Find the open circuit sensitivity in mV/Pa.
1mm. Young's modulus E = 2.07 ×105 N/mm?.
2
3
Output
6V
3
4
뜨
Transcribed Image Text:2. Figure 2 shows a pressure transducer, using a clamped diaphragm. Strain gauges 2 and 4 are meant to measure the tangential strain while gauges 1 and 3 measure the radial strain. Resistance of each gauge 1202, gauge factor = 2, radius R = 7 cm, ro = 1 cm and ri 6cm. Thickness t of the diaphragm Poisson's ratio v = 0.25. Find the open circuit sensitivity in mV/Pa. 1mm. Young's modulus E = 2.07 ×105 N/mm?. 2 3 Output 6V 3 4 뜨
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