Q5: Compute the magnetic field intensity B of a long straight wire that has a circular loop with a radius of 0.05m carrying 2 Amp. current flowing through this closed loop.

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Q5: Compute the magnetic field intensity B of a long straight wire that has a circular loop with
a radius of 0.05m carrying 2 Amp. current flowing through this closed loop.
Q6: Given the potential field V = (Ap4 + Bp )sin q: (a) show that V²V = 0 (b) Determine A
and B so that V = 100 and |E| = 500 V/m at P(p = 1, p = 22.5°, z = 2).
Q7: Match between column A and column B:
Column A
Column B
1- Biot-Savart law
A-B. dl = Mol
2- Maxwell's divergence equation
B-V²V = 0
3- Stock's theorm
C-V B=0
4- Magnetic vector potential
D- f B.dl=fVx B.ds
E- 4 x 10¹H/m
5- Pemability of the free space
6- Laplace's equation
Holdl
F-
4лr
7- Amper Law
G-V x B= 0
H-Ho
Holdl
4πR²
I-V²V=_P
င်ပ
Q8: A current element currying 20 mA in a a, direction lies along the entire z axis. Find H in
rectangular coordinates at : (a) PA(20,0,4), (b) PB(2,-4,4).
x ar
Transcribed Image Text:Q5: Compute the magnetic field intensity B of a long straight wire that has a circular loop with a radius of 0.05m carrying 2 Amp. current flowing through this closed loop. Q6: Given the potential field V = (Ap4 + Bp )sin q: (a) show that V²V = 0 (b) Determine A and B so that V = 100 and |E| = 500 V/m at P(p = 1, p = 22.5°, z = 2). Q7: Match between column A and column B: Column A Column B 1- Biot-Savart law A-B. dl = Mol 2- Maxwell's divergence equation B-V²V = 0 3- Stock's theorm C-V B=0 4- Magnetic vector potential D- f B.dl=fVx B.ds E- 4 x 10¹H/m 5- Pemability of the free space 6- Laplace's equation Holdl F- 4лr 7- Amper Law G-V x B= 0 H-Ho Holdl 4πR² I-V²V=_P င်ပ Q8: A current element currying 20 mA in a a, direction lies along the entire z axis. Find H in rectangular coordinates at : (a) PA(20,0,4), (b) PB(2,-4,4). x ar
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