Plant Physiological Ecology (Lambers, Chapin III & Pons)
3. Plant water relations
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5 Water movement through plants

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Plant Physiological Ecology
3. Plant water relations

5.3Water in Stems(P.172$B!A(B)

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5.3.1 Can We Measure Negative Xylem Pressures?
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5.3.4 Can Embolized Conduits Resume Their Funcution?
$B!v(B $B:I@r$N$G$-$?F34I$N5!G=$O!"F34I$K:F$S?e$+K~$A$?$i:F3+$9$k!#$3$N:F3+$O:,05$,@5$NLZIt(B
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5.3.5 Trade-Off Between Conductance and Safety
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2000.5.15($B7n(B) $B 5.3.6 Transport Capacity of the Xylem and Leaf Area
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5.3.7 Storage of Water in Stems
$B!v(B $B?"J*$O7T$K$$$/$i$+?e$rCyB"$9$k!#$[$H$s$I$N?"J*$K$*$$$F(B1$BF|$N?e$N>x;6NL$N(B10$B!A(B20$B!s(B
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5.4 Water in Leaves and Water Loss from Leaves
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5.4.1 Effects of Soil Drying on Leaf
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2000.5.30$B!J2P!K$b$j$d!#(B
5.4.2 The Control of Stomatal Movements and Stomatal Conductance
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3.4.3 Effects of Vaper Pressure Difference or Transpiration Rate
$B!v(B $B4%Ag4D6-$K?"J*BN$r$*$/$H>x;6$,A}2C$9$k;v$,M=A[$5$l$k!#$3$l$OMU$HBg5$4V$NK0:9$,Bg$-(B
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5.4.4 Effects of Irradiance and CO2 on Leaf Conductance
$B!v(B $B5$9&$O8w$KH?1~$7$F3+$/!#5$9&$N8w$KBP$9$kH?1~$K$O(B2$B$D$N%a%+%K%:%`$,$"$k!#(B
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5.4.5 The Cuticular Conductance and the Boundary Layer Conductance
$B!v(B $B%/%A%/%i%3%s%@%/%?%s%9$O>.$5$$$N$GL5;k$5$l$,$A$G$"$k!#8|$$%/%A%/%i$OGv$$%/%A%/%i$h(B
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5.4.6 Leaf Traits That Affect Leaf Temperature and Leaf Conductance
$B!v(B $BMU29$OMUFb$N?e>x5$NL$K1F6A$9$k$?$a!">x;6$K1F6A$r5Z$\$9!#$^$?!"8wNL$NA}2C$KH<$$MU29(B
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5.4.7 Stomatal Control:A Compromise Between Carbon Gain and Water Loss
$B!v(B $B8w9g@.$N:GBg2=$H>x;6$N:G>.2=$OAjH?$9$k$b$N$G$"$k!#Hf3SE*9b$$MU%3%s%@%/%?%s%9(B
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5.4.8 Water Storage in Leaves
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Plant Physiological Ecology (Lambers, Chapin III & Pons)
3. Plant water relations
2000$BG/(B4$B7n(B24$BF|!!C4Ev!'$O$s$P(B
5.5 Aquantic Angiosperms

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