Answer:
I = 8975.95 A
Explanation:
Given :
Diameter of the nugget, D = 5.5 mm
Length of the nugget, l = 5.0 mm
Therefore, volume of the nugget,
[tex]$ V = \frac{\pi}{4}D^2l$[/tex]
= [tex]$\frac{\pi}{4}(5.5)^25 = 118.73\ mm^3[/tex]
Now, required melting energy, (M.E.) = 9.5 x V
= 9.5 x 118.73
= 1127.95 J
Given efficiency of the heat used from electric energy, η = 1/3
Then actual required energy = ME/η
= 1127.95 / (1/3) = 3383.84 J
We know that, electric energy (EE) = [tex]$I^2Rt$[/tex]
where, I is current, R is resistance and t is time in seconds.
3383.75 = [tex]$I^2 \times 140 \times 10^{-6} \times 0.3$[/tex]
I = 8975.95 A