This study proposes a new metric called canopy geometric volume G, which is derived from small-footprint lidar data, for estimating individual-tree basal area and stem volume. Based on the plant allometry relationship, we found that basal area B is exponentially related to G (B �� 1G 3⁄4 , where � 1 is a constant) and stem volume V is proportional to G (V � � 2G, where � 2 is a constant). The models based on these relationships were compared with a number of models based on tree height and/or crown diameter. The models were tested over individual trees in a deciduous oak woodland in California in the case that individual tree crowns are either correctly or incorrectly segmented. When trees are incorrectly segmented, the theoretical model B � � 1G 3⁄4 has the best performance (adjusted R 2 , � 0.78) and the model V � � 2G has the second to the best performance ( � 0.78). When trees are correctly segmented, the theoretical models are among the top three models for estimating basal area ( � 0.77) and stem volume ( � 0.79). Overall, these theoretical models are the best when considering a number of factors such as the performance, the model parsimony, and the sensitivity to errors in tree crown segmentation. Further research is needed to test these models over sites with multiple species.
Herein is reported the direct asymmetric addition of phenol nucleophiles to benzopyrylium salts as a means to produce enantioenriched flavonoid-like compounds. This enantioselective C-C bond construction was achieved through a chiral anion phase-transfer strategy that mimics the proposed biosynthesis of this structurally diverse set of natural products. The utility of this methodology was demonstrated in enantioselective synthesis of a 2,8-dioxabicyclo[3.3.1]nonane and a 2,4-diarylbenzopyran.
A series of Pt complexes activated by Ag(I)\nsalts have been shown to catalyze Markovnikov hydroarylations of unactivated olefins under mild conditions.
Abstract Bei Versuchen,in einer Niederdruckglimmentladung im O 2 ‐ Strom aus LiOH bzw. Ca(OH) 2 die entsprechenden Superoxide LiOz bzw. Ca(O 2 ) 2 darzustellen, werden ausschließlich LizOz bzw. CaOz erhalten.
Crystalline silicon transistors offer better performance and higher speeds than amorphous or poly-silicon transistors. This leads to higher resolution, larger displays, and better performance of the AMLCD. Using pre-fabricated crystalline silicon devices allows for the advantage of more complex circuit design within the pixel such as the incorporation of storage capacitors, or multi-device circuits at each pixel. This technique also offers a simplified, lower cost alternative to present production processes.