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9.7: Multi-Curve Comparison

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    142427

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    9.7 Multi-Curve Comparison Graphs

    Plotting multiple curves on the same axes makes design comparisons visible. This directly supports Step 5 (trade-off evaluation) of Chapter 7's design framework.

    Using \(P = V^2/R\) across voltage 1–15 V for three resistance values:

    Power values for three resistor choices across selected source voltages.
    V (V) P, R=220 Ω (W) P, R=330 Ω (W) P, R=470 Ω (W)
    5 0.114 0.076 0.053
    7 0.223 0.148 0.104
    7.4 0.249 ⚠ 0.166 0.117
    9 0.368 0.245 0.172
    9.1 0.376 0.251 ⚠ 0.176
    10.8 0.530 0.353 0.248 ⚠
    ⚠ marks the approximate crossover point where each resistor exceeds the 0.25 W rating.

    On a single graph with a dashed line at P = 0.25 W, you immediately read: R = 220 Ω exceeds the rating at ~7.4 V; R = 330 Ω at ~9.1 V; R = 470 Ω at ~10.8 V. If the source voltage can reach 12 V, all three exceed the rating. The 470 Ω has the most margin.

    Power vs. voltage graph for three resistors with 0.25 W rating line.

    Figure \(\PageIndex{1}\): Power versus voltage for three resistor values calculated using \(P = V^2/R\). The dashed horizontal line marks the 0.25 W resistor power rating, showing that lower resistance values exceed the rating at lower voltages. (Copyright; Jonathan Compton, CC BY-NC 4.0).


    This page titled 9.7: Multi-Curve Comparison was last modified on Thu, 24 Sep 2026 17:36:35 GMT and is shared under a CC BY-NC license and was authored, remixed, and/or curated by .

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