The figur shows 3 positive pointcharges at the corners of a square. Thethave amag nistuch FQ Determine the magnitude and dicection öf the total electric field at the center of the Square labeled B. Evaluate your symbolic expression or Q =1.0nCoul and a= l.Ocm,
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- 1 ! 7 A skát с A spherically symmetric charge distribution produces the electric field E=( 5400 r²) N/C, where r is in m. Z mylabmastering.pearson.com/?courseld=12649908&key=55673220682936520262024#/ 2 pos W S X 3 20 F3 E D $ 4 C 888 R F What is the electric field strength at r= 16.0 cm ? Express your answer in newtons per coulomb. VG ΑΣΦ 4 Submit Part B Submit Part C What is the electric flux through a 32.0-cm-diameter spherical surface that is concentric with the charge distribution? Express your answer in newton meters squared per coulomb. ΕΠΙ ΑΣΦ % [VG| ΑΣΦ 5 Request Answer V FO Request Answer T How much charge is inside this 32.0-cm-diameter spherical surface? Express your answer in coulombs. G 4 a ^ 6 C 244 MacBook Air Y B SMC & ? 7 H ? N/C 80 F7 N-m²/C U C N H 8 - DII FS 1 ( 9 M DD K chegg.com X C ☆ O O MOSISO O 4 P= Adx. Then find the net field by integrating dE over the length of the rod. Use the following as The charge per unit length on the thin rod shown below is 2. What is the electric field at the point P? (Hint: Solve this problem by first considering the electric field dE at P due to a small segment dx of the rod, which contains charge . necessary: L, a, 2, and ɛn. Enter the magnitude. Assume that A is positive.) L A 1 E = 4ne L+A asignment valu A pair of parallel conducting plates are given charges of equal magnitude but opposite sign to create a uniform electric field with magnitude 26 N/C. A rectangular surface with dimensions 4.6 cm x 2.2 cm is located in the gap between the parallel plates. Part (a) N-m²/C What is the magnitude of the electric flux, in newton squared meters per coulomb, through the rectangular surface if it is parallel to the charged plates? |DE| = || sin() cotan() cos() tan() 8 9 HOME Grade Summary Deductions Potential Submissions 0% 100% Attempt(s) Remaining: 3 asin() acos(). E^^4 5 6 atan() acotan() sinh() cosh() tanh() cotanh() O Degrees 4% Deduction per Attempt detailed view 12 3 + - 0 END Radians VO BACKSPACE DEL CLEAR Submit Hint Feedback I give up! Submission(s) Remaining Hints: 4% deduction per hint. Hints remaining: 1 Feedback: 5% deduction per feedback. Part (b) What is the magnitude of the electric flux, in newton squared meters per coulomb, through the rectangular surface if it…
- Q1. a- a conducting sphere with radius 5 cm charged with 2 nC, find the electric field at 10 cm far from the center. b- an object charged with 4 C placed on electric field then it effect 28 N , find the magnitude of the electric field.Positive charge Q for x0 is uniformly distributed around a semi-circle of radius Ras shown in the figure. Find the x-component of the electric field at the center of curvature. -2Q O. 2kQ O kQ Oc 3kQ Oe 4kQ TR? O. 6kQ TR?O Macmillan Learning Each figure shows a rectangular box with dimensions L × W × H, placed in various electric fields of uniform magnitude Eo. For each case, find an expression for the net electric flux PÅ out of the box in terms of Eo, L, W, H, and integer coefficients. The field in each case is assumed to be perpendicular to the side faces of the box. 10 Ē 10 Ē W H W H W H L L L E 10 Ē ΦΕ ΦΕ = = ΦΕ =
- Need this with explanationFind the x and y components of the electric field produced by q1 and q2 in the figure shown below at point A and point B. (Take q1 = 1.99 µC and q2 = −1.01 µC.) Point A- Ex and Ey Point B- Ex and EyNeeds Complete handwritten solution with 100 % accuracy. Don't use chat gpt or ai i definitely upvote you.
- Please AsapA point charge q is situated in a "tent" with a cross section of an equilateral triangle of side length h. The length of the tent is I where I ≫ h. The charge is situated in the middle of the base face tent (as shown in the figure). L X A Find the electric flux through one of the side faces of the tent. Select one: ○ a. O b. ○ c. ΦΕ За 4Є0 ΦΕ 200 -- ΦΕ 4Є0 O P ○ e. ΦΕ = 3q 8€0 = 0 ΦΕ O f. 5q ΦΕ 850Please solve the given question