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Mineral nutrition and elevated [CO2] interact to modify δ13C, an index of gas exchange, in Norway spruce
No. Panggil: Tree Physiology; Volume 33, No.11, November 2013: p.1132–1144 |
Koleksi: Artikel Internasional - Oxford ::
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Spring photosynthetic recovery of boreal Norway spruce under conditions of elevated [CO2] and air temperature
No. Panggil: Tree Physiology; Volume 33, No.11, November 2013: p.1177–1191 |
Koleksi: Artikel Internasional - Oxford ::
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Growth of mature boreal Norway spruce was not affected by elevated [CO2] and/or air temperature unless nutrient availability was improved
No. Panggil: Tree Physiology; Volume 33, No.11, November 2013: p.1192–1205 |
Koleksi: Artikel Internasional - Oxford ::
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Which are the most important parameters for modelling carbon assimilation in boreal Norway spruce under elevated [CO2] and temperature conditions?
No. Panggil: Tree Physiology; Volume 33, No.11, November 2013: p.1156–1176 |
Koleksi: Artikel Internasional - Oxford ::
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Climatic control of tracheid production of black spruce in dense mesic stands of eastern Canada
No. Panggil: Tree Physiology; Volume 33, No.2, February 2013: p.175–186 |
Koleksi: Artikel Internasional - Oxford ::
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Effects of nutrient optimization on intra-annual wood formation in Norway spruce
No. Panggil: Tree Physiology; Volume 33, No.11, November 2013: p.1145–1155 |
Koleksi: Artikel Internasional - Oxford ::
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Allocation to carbon storage pools in Norway spruce saplings under drought and low CO2
No. Panggil: Tree Physiology; Volume 35, No.3, March 2015: p.243–252 |
Koleksi: Artikel Internasional - Oxford ::
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Vertical gradients and seasonal variation in stem CO2 efflux within a Norway spruce stand
No. Panggil: Tree Physiology; Volume 34, No.5, May 2014: p.488–502 |
Koleksi: Artikel Internasional - Oxford ::
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Responses of gas-exchange rates and water relations to annual fluctuations of weather in three species of urban street trees
No. Panggil: Tree Physiology; Volume 34, No.10, October 2014: p.1056–1068 |
Koleksi: Artikel Internasional - Oxford ::
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Foliar uptake, carbon fluxes and water status are affected by the timing of daily fog in saplings from a threatened cloud forest
No. Panggil: Tree Physiology; Volume 34, No.5, May 2014: p.459–470 |
Koleksi: Artikel Internasional - Oxford ::
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