and Fields
Work Book
, WORK BOOK
(WORKBOOK)
Electric Charges and Fields
Chapter-01: Electric Charges and Fields
1. Charge of electron = ……………………………………………………
Mass of electron = ……………………………………………………
Mass of proton = ……………………………………………………
……………………………………………………
2. Charge is Scalar/Vector ……………………………………………………
……………………………………………………
……………………………………………………
3. Charge is ne (T/F)
……………………………………………………
……………………………………………………
4. Mass of body (increases/decreases) when given ……………………………………………………
……………………………………………………
positive charge.
……………………………………………………
……………………………………………………
5. When a positive body is connected to Earth ……………………………………………………
……………………………………………………
Current flows from ________ (body/earth) to
……………………………………………………
_______ (body/earth). ……………………………………………………
……………………………………………………
……………………………………………………
6. ……………………………………………………
……………………………………………………
……………………………………………………
When connected and released ……………………………………………………
……………………………………………………
𝑄final1 = ……………………………………………………
……………………………………………………
……………………………………………………
𝑄final2 =
………………………………..……………………
……………………………………………………
7. Coloumb’s law definition: ……………………………………………………
……………………………………………………
……………………………………………………
8. ……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
9.
……………………………………………………
……………………………………………………
……………………………………………………
, 10. ……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
11. Like charges attract each other (T/F)
……………………………………………………
……………………………………………………
12. Unlike charges attract each other (T/F)
……………………………………………………
……………………………………………………
13. Dielectric constant: K = _________
……………………………………………………
……………………………………………………
14. Force between charges in Medium =
……………………………………………………
……………………………………………………
……………………………………………………
15.
……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
16. ……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
17.
……………………………………………………
……………………………………………………
• Force on q0 due to ring ……………………………………………………
• x where F is maximum = ……………………………………………………
……………………………………………………
……………………………………………………
………………………………..……………………
18. ……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………
F on q = ……………………………………………………
……………………………………………………
x where F is max = ……………………………………………………
……………………………………………………
……………………………………………………
……………………………………………………