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Biotechnological Production of Methyl-Branched Aldehydes
Journal of Agricultural and Food Chemistry, 2016A number of methyl-branched aldehydes impart interesting flavor impressions, and especially 12-methyltridecanal is a highly sought after flavoring compound for savory foods. Its smell is reminiscent of cooked meat and tallow. For the biotechnological production of 12-methyltridecanal, the literature was screened for fungi forming iso-fatty acids ...
Marco Alexander Fraatz +9 more
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Bank Branch Productivity Applications: Managing Bank Productivity
2017This is an example of how one bank used DEA to make real and substantial improvement in its branch productivity and profits, while maintaining service quality (Sherman HD (1989) Service Organization Productivity Management – Highlights Edition. The Society of Management Accountants of Canada, Hamilton). Over $6 million USD of annual expense savings not
Joseph C. Paradi +2 more
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Branch Dimensions and Estimation of Branch Production
Ecology, 1965Branches are organs of complexly interrelated dimensions; despite the relative flexibility of plant growth, high correlations connect most external branch characteristics. Complex interrelations also connect internal characteristics–mean and total cross—section area of branch segments of a given age, number, length, and weight of segments, and wood ...
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Branch Production and Departmental Disconnectedness
Problems in Economics, 1983In the Report of the Central Committee of the Communist Party of the Soviet Union to the Twenty-sixth Congress of the CPSU, Comrade L. I. Brezhnev stated: "Every branch faces its own urgent tasks and specific problems. But there are some problems that extend to all spheres of the national economy.
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Information entropy and particle production in branching processes
Physical Review D, 1996We show that the information entropy {ital S}{sub {ital i}}, where {ital i} is the number of steps, is a good parameter to characterize chaoticity in branching processes. The quantity {ital S}{sub {ital i}}{minus}ln{l_angle}{ital n}{r_angle}{sub {ital i}}, where {l_angle}{ital n}{r_angle}{sub {ital i}} is the average number of particles produced at ...
, Brogueira +2 more
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Low-Temperature Product Detection and Branching Ratios
2022The quantitative detection of reaction products at low temperature is crucial for the understanding of low-temperature chemistry, in part due to the increased importance of quantum effects as the temperature is lowered. Product information and branching ratios at very low temperatures are also vital input for astrochemical models.
Picard, S.D.L., Benidar, A., Goulay, F.
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ARITHMETIC PRODUCT OF SELF-SIMILAR SETS WITH TWO BRANCHES
Fractals, 2021For self-similar set [Formula: see text] [Formula: see text] we study the arithmetic product of [Formula: see text] and obtain that when [Formula: see text] then [Formula: see text] To deal with the arithmetic product of self-similar sets with different ratios, we introduce a technique named comparable rectangle.
QIN WANG, KAI ZHANG
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Catalytic Production of Branched Small Alkanes from Biohydrocarbons
ChemSusChem, 2015AbstractSqualane, C30 algae‐derived branched hydrocarbon, was successfully converted to smaller hydrocarbons without skeletal isomerization and aromatization over ruthenium on ceria (Ru/CeO2). The internal CH2CH2 bonds located between branches are preferably dissociated to give branched alkanes with very simple distribution as compared with ...
Shin-ichi, Oya +5 more
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Multifractal structure of multiparticle production in branching models
Physical Review D, 1991A procedure is described for the multifractal analysis of data on multiparticle production obtained at high energy either in experiment or in Monte Carlo simulation. It is shown how the spectrum $f(\ensuremath{\alpha})$ of the rapidity-density index $\ensuremath{\alpha}$ can be determined from the multiplicity fluctuation of the rapidity distribution ...
, Chiu, , Hwa
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Multifractal branching cascades and multiparticle production
Europhysics Letters (EPL), 2001Analytic branching cascades are suggested to interpret the experimental data obtained in e+e− annihilation into hadrons and in ultrarelativistic heavy-ion collisions. The branching dimension extracted from these data using normalized factorial moments (both for one- and two-dimensional cases and for rapidity and azimuthal phase spaces) turned out to be
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