Three particles, each having a charge of 10μC are placed at the vertices of an equilateral triangle of side 10 cm. Find the work done by a person in pulling them apart to infinite separation.
A
0 J
No worries! We‘ve got your back. Try BYJU‘S free classes today!
B
27 J
Right on! Give the BNAT exam to get a 100% scholarship for BYJUS courses
C
−54 J
No worries! We‘ve got your back. Try BYJU‘S free classes today!
D
−27 J
No worries! We‘ve got your back. Try BYJU‘S free classes today!
Open in App
Solution
The correct option is B27 J Given that,
Length of each side of the triangle, r=10 cm=0.1 m
Charge, q=10μC
The potential energy (U) of a system of two charges (q1 and q2) is given by
U=kq1q2r
In the case of system of multiple charges, the potential energy is
U=kq1q3r2+kq2q3r1+kq1q2r3
Here, q1=q2=q3=q=10×10−6 C r1=r2=r3=r=0.1 m
Substituting the values, U=9×109×10×10−6×10×10−6×30.1
⇒U=27J
This is the initial potential energy. So, Ui=27J
Now, when charges are infinitely separated, the potential energy is reduced to zero. So, Uf=0
Work done by electric force is W=Uf−Ui=−27J
Thus, work done by a person on the system is 27 J.
Why this question ?Tip:When charges are infinitely separated(r→∞) then the potential energy ofthe system reduces to zero.