![A metal rod of square cross - sectional area A having length I has current I flowing through it when a potential difference of V volt is applied across its ends (figure A metal rod of square cross - sectional area A having length I has current I flowing through it when a potential difference of V volt is applied across its ends (figure](https://haygot.s3.amazonaws.com/questions/1664657_1782242_ans_ab9b0a0b5fbb477899329b1c74d40e1d.jpg)
A metal rod of square cross - sectional area A having length I has current I flowing through it when a potential difference of V volt is applied across its ends (figure
17.For the same cross–sectional area same length, same material and for a given load the ratio of depression for the beam of a square cross section and circular section is : Options
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A metal rod of square cross-sectional area $A$ having length $l$ has current $I$ flowing through it when a potential difference of $V$ volt is applied across its ends (figure ii). What
Preparation of cross-sectional samples from a 150 mm square billet sample. | Download Scientific Diagram
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The effect of cross sectional area of tube on friction factor and heat transfer nanofluid turbulent flow - ScienceDirect
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