Part (A) A strain gauge and bridge circuit are used to measure the tension force in a bar of steel that has a cross-sectional area of 13 cm.The strain gauge has a nominal resistance of 120 0 and a GF of 2. The bridge is supplied with 10 V. When the bar is unloaded, the bridge 2-in. cross-sectional area the output is oV. Then force is applied to the bar, and the bridge voltage goes to 0.0005v. Find the force on the bar. V 0.000s v 20 a 10 V
Part (A) A strain gauge and bridge circuit are used to measure the tension force in a bar of steel that has a cross-sectional area of 13 cm.The strain gauge has a nominal resistance of 120 0 and a GF of 2. The bridge is supplied with 10 V. When the bar is unloaded, the bridge 2-in. cross-sectional area the output is oV. Then force is applied to the bar, and the bridge voltage goes to 0.0005v. Find the force on the bar. V 0.000s v 20 a 10 V
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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
Transcribed Image Text:Part (A) A strain gauge and bridge circuit are used to measure the tension force in a bar of steel that has a cross-sectional area of 13 cm.The strain gauge has a nominal resistance of 120 0 and a GF of 2. The bridge is supplied with 10 V. When the bar is unloaded, the bridge is balanced so
2-in. cross-sectional area
4120 a
the output is oV. Then force is applied to the bar, and the bridge voltage goes to 0.0005V. Find the force on the bar.
V 0.000s v
20 a
10 V
6000
Part (B)f we assume Simple resistance bridge arrangement as shown in the fgure below for strain measurement, colculate the change in output voltage, if exctng voltnge is 9.5 V and we have the value of AR/R as per the dats given in part (a).
く)
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