Exact(1)
Figure 2 An overview of our approach: (i) Off-line Tone-model learning, (ii) Fourier transform and piano roll conversion, (iii) Switch-off inactive pitches and (iv) NMF process.
Similar(59)
The NMRPipe processing package(18) was used to perform the initial steps of NMR data processing consisting of (i) data conversion, (ii) apozidation, (iii) zero-filling, (iv) Fourier transformation, (v) phase correction, and (optionally) (vi) polynomial baseline correction.
The paper addresses bio-based approaches, but mainly focuses on (i) the combination of photovoltaic (PV) devices and electrocatalysis, (ii) single unit operation by photocatalytic conversion, and (iii) solar thermal conversion.
The analysis involves quantitative and qualitative assessments based on (i) energy resources availability and demand for hydrogen, (ii) commercial viability of primary energy conversion technologies, (iii) academia, industry and government participation, (iv) sustainability and (v) economics.
A second part of the paper is dedicated to the analysis of main technologies enabling wideband spectrum sensing, dealing with the (i) RF frontend, (ii) A/D conversion, and (iii) waveform processing section of a potential instrument.
These, as elaborated by Brussow et al., 2004 [6] include (i) lysogenic conversion (ii) genome rearrangements, (iii) gene disruption, (iv) protection from lytic infection, (v) lysis of competing strains and (vi) introduction of new fitness factors (lysogenic conversion, transduction).
The first one consists of a porous tube covered with a thin film of catalyst oxide (Type-I), the second one is a non-porous tube of solid ion conductor covered with a catalyst layer (Type-II), and the third one is a non-porous tube made of perovskite-type mixed conductor which itself has activity for methane conversion (Type-III).
Conversion of uroporphyrinogen III into siroheme requires three functions (methylation by SirA, iron chelation, and oxidation by SirC).
The pathways are responsible for (i) synthesis of three amino acids (aspartate, asparagine, glutamate), (ii) the synthesis of glucose under fasting conditions by using carbon atoms from these four amino acids and (iii) conversion of amino acids to their corresponding alpha-keto acids, coupled to their conversion to glutamate, which is the first step in the catabolism of most amino acids.
The effect of the side reactions (hydrogen and oxygen evolution) on the current efficiencies and the conversion of Ce(III) and Ce(IV) are discussed.
The use of a low acid concentration led to a poor conversion of Ce(III) to Ce(IV) ions during the discharge cycle.
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