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Six potential standalone liquid desiccant cycles are identified and analyzed to select the best configuration for achieving thermal comfort.
Crystallizer stability is explored and regions of sustained limit cycles are identified for the proposed kinetic models.
One long-term base level cycles (LSC1), three middle-term base level cycles (MSC1, MSC2, and MSC3), and fifteen short-term base level cycles are identified.
This study describes Tonian-Cryogenian pre-rift strata of the upper Shaler Supergroup, deposited in the Amundsen Basin (Victoria Island, Canada), in which five transgressive-regressive (T-R) cycles are identified.
A series of binge/purge, advance/retreat, cycles are identified which correspond to alternating periods of relatively cold-based ice, (associated with a high aspect ratio and net growth), and wet-based ice with a lower aspect ratio, characterised by streaming.
We show that several representative substrate cycles are identified within their functional context based on known metabolic pathways whose reactions are present in each module.
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In addition, three distinct circulation cycles were identified and their time distribution was quantified.
Each of these cycles is identified with a specific historical case of catch-up.
The configuration with the lowest cost (Energy × Cycles) is identified as the best tradeoff relation between energy and number of cycles.
As with the data branch analysis, the configuration with the lowest cost (Energy × Cycles) is identified as the best tradeoff relation between energy and number of cycles.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com