Oscarliu117 (Talk | contribs) |
Oscarliu117 (Talk | contribs) |
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<div id="pt"> | <div id="pt"> | ||
<p class="pcontent"> | <p class="pcontent"> | ||
− | $$slope={V_{1000000}-V_{400}\over log10^6-log400}={V-V_400\ | + | $$slope={V_{1000000}-V_{400}\over log10^6-log400}={V-V_400\overlogC-log400}$$</br> |
− | From the graph, we have shown that V1000000 = 260 、V400 = 705</br> | + | |
− | + | <ul> | |
− | + | <li>From the graph, we have shown that V<sub>1000000</sub> = 260 、V<sub>400</sub> = 705</li>From the graph, we have shown that V1000000 = 260 、V400 = 705</br> | |
+ | <li>Therefore, we can get the slope value.</li> | ||
+ | <li>After shifting the equation we will get</li> | ||
+ | </ul> | ||
+ | |||
$${logC-log400}={V-V_400\over slope}$$</br> | $${logC-log400}={V-V_400\over slope}$$</br> | ||
$$C={10^{log400+{V-V_400\over slope}}}$$</br> | $$C={10^{log400+{V-V_400\over slope}}}$$</br> | ||
− | We can then get the unknown CO2 concentration from this formula.</ | + | |
+ | <ul> | ||
+ | <li>We can then get the unknown CO2 concentration from this formula.</li> | ||
+ | </ul> | ||
+ | |||
</p> | </p> | ||
</br></br> | </br></br> | ||
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− | <div | + | <div class="reference" id="Reference"> |
</br></br></br></br> | </br></br></br></br> |
Revision as of 14:13, 5 October 2018
CO2 Sensor