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Assume the following values of the Debye equations for water: Erdc = 87.46 (dc), Eroo = 4.87 (at f = 300 GHz well beyond the

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Assume the following values of the Debye equations for water: Erdc = 87.46 (dc), Eroo = 4.87 (at f = 300 GHz well beyond the relaxation peak) and t = 1/w. = (2119.18 GHz)-1 = 0.017 ns. Plot a linear-log (frequency on the log axis) of the real and imaginary, and em', part of e for water just above the freezing point at 0.2C. Vary the frequency from 0.3 GHz to 300 GHz. Please use a plotting software. Assume the following values of the Debye equations for water: Erdc = 87.46 (dc), Eroo = 4.87 (at f = 300 GHz well beyond the relaxation peak) and t = 1/w. = (2119.18 GHz)-1 = 0.017 ns. Plot a linear-log (frequency on the log axis) of the real and imaginary, and em', part of e for water just above the freezing point at 0.2C. Vary the frequency from 0.3 GHz to 300 GHz. Please use a plotting software

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