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Home/ Questions/Q 1043078
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junaid ansari
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junaid ansari
Asked: October 8, 20242024-10-08T08:53:08+05:30 2024-10-08T08:53:08+05:30In: Education

Compute divergence theorem for D= 5r2 /4 i in spherical coordinates between r=1 and r=2

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      Quearn Quearnist
      2024-10-08T08:53:20+05:30Added an answer on October 8, 2024 at 8:53 am

      To compute the divergence theorem for the given vector field ( textbf{D} = frac{5r^2}{4} hat{i} ) in spherical coordinates between ( r=1 ) and ( r=2 ), we first need to express the vector field in spherical coordinates and then apply the divergence theorem accordingly.

      ### Step 1: Convert to Spherical Coordinates

      The problem presents a vector field in presumably Cartesian coordinates (given the use of ( hat{i} ), typically representing the unit vector in the x-direction in Cartesian coordinates). In spherical coordinates, positions are given by ( (r, theta, phi) ), where:

      – (r) is the radial distance from the origin,

      – (theta) is the polar angle measured from the z-axis,

      – (phi) is the azimuthal angle in the xy-plane from the x-axis.

      To convert ( frac{5r^2}{4} hat{i} ) into spherical coordinates, we acknowledge that in spherical coordinates, the Cartesian (x) component relates to (r) as (x = r sin(theta) cos(phi)). However, the vector field provided does not directly correlate with standard spherical components since it’s prescribed in the ( hat{i} ) direction. Therefore, we’re a bit at an impasse regarding conventions; the given description suggests a simplification or a misunderstanding in the application of the vector field

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    2. junaid ansari
      junaid ansari
      2024-10-08T08:53:46+05:30Added an answer on October 8, 2024 at 8:53 am

      c
      Explanation: ∫∫ ( 5r2
      /4) . (r2 sin θ dθ dφ), which is the integral to be evaluated. Since it is
      double integral, we need to keep only two variables and one constant compulsorily.
      Evaluate it as two integrals keeping r = 1 for the first integral and r = 2 for the second
      integral, with φ = 0→2π and θ = 0→ π. The first integral value is 80π, whereas second
      integral gives -5π. On summing both integrals, we get 75π

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