Q1)- Galvanometer converted to multi range voltmeter showing in fig-1- with voltage ranges Of (V b,V c. Vd,Ve ).designed by a basic d Adrsonval , Rs1, Rs2, Rs3, Rs4,(3Kohm, 16Kohm.25Kohm,50Kohm).respectively, with internal resistance ( Rm =120 ohm „Im=600macroA connected with parallel resistance (30 ohm) calculate: (V 1,V2 V3 ,V 4 ). by using un direct Sensitivity method
Q1)- Galvanometer converted to multi range voltmeter showing in fig-1- with voltage ranges Of (V b,V c. Vd,Ve ).designed by a basic d Adrsonval , Rs1, Rs2, Rs3, Rs4,(3Kohm, 16Kohm.25Kohm,50Kohm).respectively, with internal resistance ( Rm =120 ohm „Im=600macroA connected with parallel resistance (30 ohm) calculate: (V 1,V2 V3 ,V 4 ). by using un direct Sensitivity method
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Q1)- Galvanometer converted to multi range voltmeter showing in fig-1- with voltage ranges Of (V b,V c. Vd,Ve ).designed by a basic d Adrsonval , Rs1, Rs2, Rs3, Rs4,(3Kohm, 16Kohm.25Kohm,50Kohm).respectively, with internal resistance ( Rm =120 ohm „Im=600macroA connected with parallel resistance (30 ohm) calculate: (V 1,V2 V3 ,V 4 ). by using un direct Sensitivity method
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