A butterfly net (as shown in the figure) is in a uniform electric field of magnitude E = 2 mV/m. The rim of the net is a circle of radius a = 19 cm. If the rim is aligned perpendicularly with respect to the electric field, calculate the net electric flux through the netting in µNm2/c2.
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- The electric field that comes out perpendicularly from the surface of the circular crown of internal radii a=10 www um www wwwwwwwww wwwwwwwwww cm, external b=20 cm, depends on the radial distance "r", according to: www E=E.(r/rm)² Where Eo=500 N/C is a constant and "rm" is the mean radius of the crown. Find the electric flux (in Nom²/c²) passing through the surface of the crown. a) 50,4 b) 51,4 a 0 E c) 52,4 b d) 53,4 e) 54,4The figure below shows a uniform electric field of magnitude E = 410 N/C making an angle of = 66.0° with a flat surface of area A = 3.60 m². What is the magnitude of the electric flux through this surface (in N. m²/C)? E N - m²/c Ⓡa through c please A charge of -90.4 uC is placed on spherical conductor of radius 10.0 cm. Part (a) What is the magnitude, in newtons per coulmb, of the electric field due to this charge at a distance of 1.32 cm from the center of the sphere? Give your answer in N/C. Part (b) What is the magnitude, in newtons per coulmb, of the electric field due to this charge at a distance of 7.08 cm from the center of the sphere? Give your answer in N/C. Part (c) What is the magnitude, in newtons per coulmb, of the electric field due to this charge at a distance of 17.1 cm from the center of the sphere. Give your answer in N/C.
- A cylindrical metal can have a height of 27 cm and a radius of 11 cm. The electric field is directed outward along the entire surface of the can (including the top and bottom), with a uniform magnitude of 4.0x10^5 N/C. a.) What is the surface area of the cylinder?A flat surface of area 3.50 m² is rotated in a uniform electric field of magnitude E = 5.70 × 105 N/C. (a) Determine the electric flux through this area when the electric field is perpendicular to the surface N- m?/C (b) Determine the electric flux through this area when the electric field is parallel to the surface. N. m?/cConsider an electric field = 33x - 81y. The coordinates x and y are measured in meters and the electric field is in N/C. What is the magnitude of the flux (in Nm2/C) of this field through a square whose corners are located at
- A 32.0-cm-diameter circular loop is rotated in a uniform electric field until the position of maximum electric flux is found. The flux in this position is measured to be 5.44 × 105 N · m²/C. What is the magnitude of the electric field? MN/CConsider a closed triangular box resting within a horizontal electric field of magnitude E = 6.66 x 10* N/C as shown in the figure below. 10.0 cm. 30.0 cm 60.0⁰ (a) Calculate the electric flux through the vertical rectangular surface of the box. KN. ·m²/c (b) Calculate the electric flux through the slanted surface of the box. kN m²/c . (c) Calculate the electric flux through the entire surface of the box. kNm²/cA 50.0-cm-diameter loop is rotated in a uniform electric field until the position of maximum electric flux is found. The flux in this position is measured to be 4.80 x 105 Nm2/C. What is the magnitude of the electric field?