<p>(A) Lines are A-C<sub>i</sub> curves simulated at a range of values for T<sub>leaf</sub>. Symbols are the solutions of the coupled leaf gas exchange model, while also taking into account the correlation between D and T<sub>leaf</sub> (based on an empirical relationship [<a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0143346#pone.0143346.ref035" target="_blank">35</a>]: D = 0.000605*T<sub>air</sub><sup>2.39</sup>). Note that as T<sub>leaf</sub> and D increase, C<sub>i</sub> decreases. (B) The corresponding temperature optimum of A<sub>n</sub>. Symbols are the same as in panel (A) but plotted against T<sub>leaf</sub>.</p
Abstract. The following two models were combined to simultaneously predict CO2 and H2O gas exchange ...
<p><i>c</i> is a scaling constant, Δ<i>H</i><sub>a</sub> is the activation energy, Δ<i>H</i><sub>d</...
<p>(A) Fitted A-C<sub>i</sub> curves with one curve highlighted (B) Estimates of J<sub>max</sub> plo...
<p>(A) Relations between stomatal conductance and midday leaf water potential, (B) Relations between...
<p>The curves represent the results from the model of Katul et al. [11, 49] based on [48] (<a href="...
<p>The filled circles indicate the warming plots and the open circles for the control plots. The blu...
<p>A) Relationship between the predicted rates of RuBP carboxylation/oxygenation (<i>W</i><sub>c</su...
<p>(A) Assimilation, (B) Stomatal conductance and (C) Transpiration. Data are mean values of 20 repl...
<p><i>c</i> is a scaling constant, Δ<i>H</i><sub>a</sub> is the activation energy, Δ<i>H</i><sub>d</...
<p><i>y</i>: date of leafing; <i>x<sub>t</sub></i>: daily mean air temperature in degrees Celsius; <...
Here I present the R package 'plantecophys', a toolkit to analyse and model leaf gas excha...
<p>Photosynthesis (upper panel), stomatal conductance (middle panel) and instantaneous water use eff...
Leaf temperature (Tleaf) influences rates of respiration, photosynthesis, and transpiration. The loc...
<p>General linear mixed models test the effects of site, tree type, season, tree diameter, and air t...
<p>The top panels indicate the control plots and the lower panels for the warming plots. <i>C</i><su...
Abstract. The following two models were combined to simultaneously predict CO2 and H2O gas exchange ...
<p><i>c</i> is a scaling constant, Δ<i>H</i><sub>a</sub> is the activation energy, Δ<i>H</i><sub>d</...
<p>(A) Fitted A-C<sub>i</sub> curves with one curve highlighted (B) Estimates of J<sub>max</sub> plo...
<p>(A) Relations between stomatal conductance and midday leaf water potential, (B) Relations between...
<p>The curves represent the results from the model of Katul et al. [11, 49] based on [48] (<a href="...
<p>The filled circles indicate the warming plots and the open circles for the control plots. The blu...
<p>A) Relationship between the predicted rates of RuBP carboxylation/oxygenation (<i>W</i><sub>c</su...
<p>(A) Assimilation, (B) Stomatal conductance and (C) Transpiration. Data are mean values of 20 repl...
<p><i>c</i> is a scaling constant, Δ<i>H</i><sub>a</sub> is the activation energy, Δ<i>H</i><sub>d</...
<p><i>y</i>: date of leafing; <i>x<sub>t</sub></i>: daily mean air temperature in degrees Celsius; <...
Here I present the R package 'plantecophys', a toolkit to analyse and model leaf gas excha...
<p>Photosynthesis (upper panel), stomatal conductance (middle panel) and instantaneous water use eff...
Leaf temperature (Tleaf) influences rates of respiration, photosynthesis, and transpiration. The loc...
<p>General linear mixed models test the effects of site, tree type, season, tree diameter, and air t...
<p>The top panels indicate the control plots and the lower panels for the warming plots. <i>C</i><su...
Abstract. The following two models were combined to simultaneously predict CO2 and H2O gas exchange ...
<p><i>c</i> is a scaling constant, Δ<i>H</i><sub>a</sub> is the activation energy, Δ<i>H</i><sub>d</...
<p>(A) Fitted A-C<sub>i</sub> curves with one curve highlighted (B) Estimates of J<sub>max</sub> plo...