Part A A2.0 cm × 3.0 cm rectangle lies in the xz-plane. What is the magnitude of the electric flux through the rectangle if Ē = (120î – 250k) N/C? Express your answer in newton meters squared per coulomb. • View Available Hint(s) de = 0 N. m² /C Submit Previous Answers v Correct Part B What is the magnitude of the electric flux through the rectangle if Ē = (120î – 250ĵ) N/C? Express your answer in newton meters squared per coulomb.
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- Part A The electric flux is 300 Nm? /C through two opposing faces of a 2.0 cm x 2.0 cm x 2.0 cm box. The flux through each of the other faces is 200 Nm? /C. How much charge is inside the box? Express your answer to two significant figures and include the appropriate units. HA ? q = Value Units Submit Request Answer Provide Feedback3. Assume a solid conductor is placed next to a negatively charged sphere. This causes the surface of the conductor near the sphere to become positively charged so that the net electric field inside the conductor is zero. Now we cut a hole so that it is entirely encased by the conductor. а. Does removing part of the inside of the conductor affect the electric field? cross-section of 3D conductor b. What the electric field inside the hole? c. Explain why sensitive equipment are often placed inside conductors. For example, circuit boards are typically shipped in foil-lined bags while cell phone signals are weaker inside warehouses with metal sides.Two very large, nonconducting plastic sheets, each 10.0 cm thick, carry uniform charge densities 01, 02, 03 and σ4 on their surfaces, as shown in the following figure(Figure 1). These surface charge densities have the values σ1=-5.00 μС/m², σ₂ = 5.00 μC/m², σ3 = 1.70 μC/m², and σ = 4.00 μC/m². Use Gauss's law to find the magnitude and direction of the electric field at the following points, far from the edges of these sheets. What is the magnitude of the electric field at point A, 5.00 cm from the left face of the left-hand sheet? Express your answer to three significant figures and include the appropriate units. μα E = Value Submit Request Answer ? Units ▾ Part B What is the direction of the electric field at point A, 5.00 cm from the left face of the left-hand sheet? to the left. to the right. upwards. downwards. Submit Request Answer ▾ Part C What is the magnitude of the electric field at point B, 1.25 cm from the inner surface of the right-hand sheet? Express your answer to three…
- A 1.4 cm x 1.4 cm x 1.4 cm box with its edges aligned with the xyz-axes is in the electric field E = (370x + 150) i N/C, where x is in meters. Part A What is the net electric flux through the box? Nm2/Cquesiton 7 and part a,b,cElectric Fields 1. A wire has been given a net positive electric charge Q evenly distributed along its length. The wire has a length of L and is located on the x-axis with its left end at the origin as drawn. Set up the integral you need to do to find the electric field at a distance d to the left of the origin. Some steps you may wish to follow are: a. Figure out the direction the electric field will have at our location x = -d. This will be the same as f b. Write the differential charge dą in terms of the charge per length and a differential length. c. ris a function of x which means we have to integrate to find the electric field. Write down r. d. Put everything together (including the vector direction) into one integral that would allow you to find the E-field. Write this in the box below. e. You are not required to complete the integral and no credit is given for completing the integral. d dE =
- P8Don't use chat gptThe cube in the figure (Figure 1)has sides of length L=10.0 cm. The electric field is uniform, has a = magnitude E 4.00 x 103 N/C, and is parallel to the xy-plane at an angle of 36.9° measured from the axis toward the +y-axis. +2 What is the electric flux through the cube face S₁? 1 ΑΣΦ Φι Figure Submit Request Answer ▾ Part B What is the electric flux through the cube face S2? ΜΕ ΑΣΦ 42 = Submit Request Answer ▾ Part C What is the electric flux through the cube face S3? ΜΕ ΑΣΦ 43 = Submit Request Answer ▾ Part D 1 of 1 S₂ (top) S6 (back) What is the electric flux through the cube face S4? ΜΕ ΑΣΦ ? N.m²/C ? N-m²/C ? N. m²/C ? N.m²/C