Review Consider a spherical Gaussian surface and three charges: q 1 = 2.02 μC , q 2 = -3.43 μC , and q 3 = 4.55 μC . Find the electric flux through the Gaussian surface if it completely encloses
(a) only charges q 1 and q 2 ,
(b) only charges q 2 and q 3
(c) all three charges.
(d) Suppose a fourth charge, Q, is added to the situation described in part C. Find the sign and magnitude of Q required to give zero electric flux through the surface.
Concept: use Gauss’s law of flux through an
enclosed surface containing charges inside as shown below ***************************************************************************************************
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Review Consider a spherical Gaussian surface and three charges: q 1 = 2.02 μC , q...
Review Part A Consider a spherical Gaussian surface and three charges: qi-1.55 μC , g ,--2.70 μC ' and g3- 3.52 C. Find the electric flux through the Gaussian surface if it completely encloses (a) only charges qh and q2, (b) only charges q2 and q3, and (c) all three charges Submit Part B Submit Part C N-m2/C Submit Part D Suppose a fourth charge, Q, is added to the situation described in part C. Find the sign and magnitude...
Consider a spherical Gaussian surface and three charges: q1 =
1.54 μC , q2 = -2.50 μC , and q3 = 3.60 μC . Find the electric flux
through the Gaussian surface if it completely encloses (a) only
charges q1 and q2, (b) only charges q2 and q3, and (c) all three
charges.
Part A Submit Request Answer Part B Submit Request Answer Part N m2/C SubmitReq Request Answer ▼ Part D Suppose a fourth charge, Q, is added to...
Consider a spherical Gaussian surface and three charges: q1= 2.11 μCμC , q2= -3.34 μCμC , and q3= 4.58 μCμC . Find the electric flux through the Gaussian surface if it completely encloses: A: Only charges q1 and q2 B: Only charges q2 and q3 C: All three charges D: Suppose a fourth charge, Q, is added to the situation described in part C. Find the sign and magnitude of Q required to give zero electric flux through the surface.
Problem 19.65 Consider a spherical Gaussian surface and three charges:91-2.01 C,g2 3.33 uC, and qs 4.64 C. Find the electric flux through the Gaussian surface if it completely encloses (a) only charges g1 and g2. (b) only charges g2 and gs and (c) all three charges. Part A ANSWER enし N-m2/c Part B ANSWER: Part C ANSWER: N.m2/C Part D Suppose a fourth charge, Q, is added to the situation described in part C. Find the sign and magnitude of...
Consider a spherical Gaussian surface and three charges: q1 = 1.65 μC , q2 = -2.43 μC , and q3 = 3.51 μC . Find the electric flux through the Gaussian surface if it completely encloses (a) only charges q1 and q2, (b) only charges q2 and q3, and (c) all three charges.
Consider a spherical Gaussian surface and three charges: q1 = 1.71 μC , q2 = -2.21 μC , and q3 = 3.60 μC . Find the electric flux through the Gaussian surface if it completely encloses (a) only charges q1 and q2, (b) only charges q2 and q3, and (c) all three charges.
(d) Suppose a fourth charge,
Q, is added to the situation described in part C. Find the
sign and magnitude of Q required to give zero electric
flux through the surface.
Consider a spherical Gaussian surface and three charges: q -2.18 HC, 92--3.63 C, and qs 4.95 ?C . Find the electric flux through the Gaussian surface if it completely encloses (a) only charges qi and q2. (b) only charges q2 and g3, and (c) all three charges.
19.65 &19.69
Problem 19.65 Asurface encloses the charges qī-3.4 z»c , e, " 0.3 Part A C . and 9--4.4 c . 3.4ャレろ+ (-4.4) Find the electric flux through this surface. Express your answer using two significant figures ANSWER /3.25 x 10-12 Problem 19.69 aas uc hnd en een Cosider a spherical Gaussian surtce and three charges: a-1 BO 10. 0--2 54 μ C , and fux through the Gaussian surface i it completely encloses (a) only charges i and...
Three point charges are located near a spherical Gaussian
surface of radius 12.5 cm. One charge (+3Q =11.4 μC) is inside the
sphere, and the others (charge +Q =3.8 μC) are a distance
4.16666666666667 cm outside the surface.
What is the total (net) electric flux through the Gaussian
surface?
8) A Gaussian spherical surface of radius 0.20 m completely surrounds a collection of charges. A uniform electric field emerging from the charges has a value of.51 NC. a) Find the electric flux through the surface if the collection consists of a single charge. Use the Gauss Law to determine the magnitude of this charge inside the sphere. b)