An electric field given by Ễ = 2.1 î - 5.6(y² + 6.2), pierces the Gaussian cube of edge length 0.170 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube? Gaussian surface x
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- An electric field given by = 5.5i - 2.3(y2 + 5.8)j pierces the Gaussian cube of edge length 0.210 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube?An electric field given by E=3.01-9.6(y² +4.3) pierces the Gaussian cube of edge length 0.180 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube? (a) Number i -8e-6 Units N•m^2/C Gaussian surface -XAn electric field given by E = 8.6i-7.8(y2 +8.1) pierces the Gaussian cube of edge length 0.950 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube? Gaussian surface (a) Number i Units (b) Number i Units (c) Number i Units (d) Number i Units (e) Number i Units
- I need help with all parts.An electric field given by E-4.01-6.4(y2 +7.8) pierces the Gaussian cube of edge length 0.110 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube? (a) Number (b) Number (c) Number (d) Number Units Units Units Units Gaussian surfaceAn electric field given by E=3.0-9.6(y² + 4.3) pierces the Gaussian cube of edge length 0.180 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube? Gaussian surface
- An electric field given by E = 4.31-3.8(y² +3.4) pierces the Gaussian cube of edge length 0.730 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube? (a) Number (b) Number i (c) Number (d) Number 0 (e) Number i| ! Units Units Units N•m^2/C N-m^2/C N-m^2/C Units N-m^2/C ! Units N-m^2/C Gaussian surfaceAn electric field given by É = 4.11 - 4.5(y? +2.6)ĵ pierces the Gaussian cube of edge length 0.580 m and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the electric flux through the (a) top face, (b) bottom face, (c) left face, and (d) back face? (e) What is the net electric flux through the cube? -Gaussian surfaceThe square surface shown in the figure measures 3.0 mm on each side. It is immersed in a uniform electric field with magnitude E = 2100 N/C and with field lines at an angle of 35° with a normal to the surface, as shown. Take that normal to be "outward," as though the surface were one face of a box. Calculate the electric flux through the surface. Normal 4 Number Units Use correct number of significant digits; the tolerance is +/-2%
- (a) Consider an electric field that is given by E= -2.0-3.0ỹ - 2.02 (Units V/m). Find the flux of the field through a square surface of side length 1 cm that lies in the yz plane. (b) What is the total electric flux through the closed surface whose cross sections are shown below? (a) 4.0 x 10-6 C -3.0 x 10-6 C 5.0 x 10-6 C (b) -2.0 x 10-6 CAn electric field given by E = 2.6 i – 6.1(y² + 6.2) j pierces the Gaussian cube of edge length 19.0 cm and positioned as shown in the figure. (The magnitude E is in newtons per coulomb and the position x is in meters.) What is the net electric flux in Nm?/C through the cube? 3. Gaussian surface (a) -0.0076 (b) -0.0079 (c) -0.0082 (d) -0.0085 (e) None of the aboveAn electric field is = 300 [N/C] Î for x>0 and E= -300 [N/C] Î for x <0. A cylinder of length 20 [cm] and radius 4 [cm] has its center at the origin and its axis along the x-axis such that one end is at x = +10 [cm] and the other is at x = -10 [cm] as shown. What is the net outward flux through the entire cylindrical surface? y.cm 20 cm O A. -1.51 [Nm²/C] OB. 0[Nm²/C] O c. 1.51 [Nm²/C] O D. 3.02[Nm²/C] 14 cm x, cm