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1 Numerical ElectroMagnetics & Semiconductor Industrial Applications Ke-Ying Su Ph.D. National Central University Department of Mathematics 03. Electrostatic Fields
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2 Ke-Ying Su Ph.D. The material is for NCU/MATH course only. I. Operator Formulation
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3 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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4 Ke-Ying Su Ph.D. The material is for NCU/MATH course only. II. Charged Conducting Plate
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5 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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6 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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7 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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8 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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9 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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10 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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11 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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12 Ke-Ying Su Ph.D. The material is for NCU/MATH course only.
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13 Ke-Ying Su Ph.D. The material is for NCU/MATH course only. Homework 1 1. Write a program, and use the formulation in page 11 to calculate the capacitance of a unit square conducting plate (1m x 1m) in free-space. Verify your result with the Galerkin’s solution in TABLE I, page 12. 2. Use this program to calculate the charge distribution of a arbitrary shape conducting plate in free-space, and draw the charge distribution.
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14 Ke-Ying Su Ph.D. The material is for NCU/MATH course only. Thank You
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