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41.
42.
We prove a new systolic volume lower bound for non-orientablen-manifolds, involving the stable 1-systole as well as the codimension-1systole with coefficients in 2. As an application, we provethat Lusternik–Schnirelmann category and systolic categoryagree for non-orientable closed manifolds of dimension 3, extendingour earlier result in the orientable case. Finally, we provethe homotopy invariance of systolic category. 相似文献
43.
Eric Katz 《Journal of Algebraic Combinatorics》2014,39(3):683-690
We give a non-Abelian analogue of Whitney’s 2-isomorphism theorem for graphs. Whitney’s theorem states that the cycle space determines a graph up to 2-isomorphism. Instead of considering the cycle space of a graph which is an Abelian object, we consider a mildly non-Abelian object, the 2-truncation of the group algebra of the fundamental group of the graph considered as a subalgebra of the 2-truncation of the group algebra of the free group on the edges. The analogue of Whitney’s theorem is that this is a complete invariant of 2-edge connected graphs: let G, G′ be 2-edge connected finite graphs; if there is a bijective correspondence between the edges of G and G′ that induces equality on the 2-truncations of the group algebras of the fundamental groups, then G and G′ are isomorphic. 相似文献
44.
Wallace Feurzeig Gabriel Katz Philip Lewis Victor Steinbok 《International Journal of Computers for Mathematical Learning》2000,5(3):283-284
Volume Contents
Volume Contents 相似文献45.
46.
It is shown in this paper that if A is a closed normal subgroup of kω-topological groups G and H, then the free product of G and H with A amalgamated, G1AH, exists, is Hausdorff and indeed a kω-group. 相似文献
48.
Dr. Paolo Bollella Dr. Inhee Lee Prof. David Blaauw Prof. Evgeny Katz 《Chemphyschem》2020,21(1):120-128
Biocatalytic buckypaper electrodes modified with pyrroloquinoline quinone (PQQ)-dependent glucose dehydrogenase and bilirubin oxidase for glucose oxidation and oxygen reduction, respectively, were prepared for their use in a biofuel cell. A small (millimeter-scale; 2×3×2 mm3) enzyme-based biofuel cell was tested in a model glucose-containing aqueous solution, in human serum, and as an implanted device in a living gray garden slug (Deroceras reticulatum), producing electrical power in the range of 2–10 μW (depending on the glucose source). A microelectronic temperature-sensing device equipped with a rechargeable supercapacitor, internal data memory and wireless data downloading capability was specifically designed for activation by the biofuel cell. The power management circuit in the device allowed the optimized use of the power provided by the biofuel cell dependent on the sensor operation activity. The whole system (power-producing biofuel cell and power-consuming sensor) operated autonomously by extracting electrical energy from the available environmental source, as exemplified by extracting power from the glucose-containing hemolymph (blood substituting biofluid) in the slug to power the complete temperature sensor system and read out data wirelessly. Other sensor systems operating autonomously in remote locations based on the concept illustrated here are envisaged for monitoring different environmental conditions or can be specially designed for homeland security applications, particularly in detecting bioterrorism threats. 相似文献
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