Analysis 3: Based on the design of the antennas, the Standard Absorption Rate (SAR) of RF power by the patient tissue is expected to be as follows: SAR(t) = V2t + e0.1c+2 where, t is time in seconds. 3. Manually estimate the total dosage from 40 to 60 seconds using the Mid-ordinate Rule, Trapezoidal Rule, and Simpson's Rule using 5 intervals, and again using 10 intervals. Show detail of your steps.

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Analysis 3: Based on the design of the antennas, the Standard Absorption Rate (SAR) of RF power by the
patient tissue is expected to be as follows:
SAR(t) = V2t + e0.1t+2 where, t is time in seconds.
3. Manually estimate the total dosage from 40 to 60 seconds using the Mid-ordinate Rule,
Trapezoidal Rule, and Simpson's Rule using 5 intervals, and again using 10 intervals. Show details
of your steps.
Transcribed Image Text:Analysis 3: Based on the design of the antennas, the Standard Absorption Rate (SAR) of RF power by the patient tissue is expected to be as follows: SAR(t) = V2t + e0.1t+2 where, t is time in seconds. 3. Manually estimate the total dosage from 40 to 60 seconds using the Mid-ordinate Rule, Trapezoidal Rule, and Simpson's Rule using 5 intervals, and again using 10 intervals. Show details of your steps.
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