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largest decrease » largest decreases (Expand Search), larger decrease (Expand Search), marked decrease (Expand Search)
cycles increases » cases increased (Expand Search)
ct largest » _ largest (Expand Search)
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EO neurons are required for behavioral synchronization to temperature cycles in constant light.
Published 2022Subjects: -
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EO neurons are required for behavioral synchronization to temperature cycles in constant light.
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Cell cycle regulating genes contribute to blastospore diploidization during unisexual reproduction.
Published 2021Subjects: -
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Life-cycle boundary of the thermodynamic cycle.
Published 2025“…rsv_idx=1&tn=15007414_12_dg&wd=proves翻译&fenlei=256&usm=1&ie=utf-8&rsv_pq=f06398ff00987d3a&oq=prove&rsv_t=e735Ha0NuyAhPEhCR+rAjDMVIWE1C2sOZsORaFhddHALt4hKAB8hJ5Fu+jFo6KjaqQeiQ4M&sa=re_fy_huisou" target="_blank">prove</a> that, for S-KC, P-KC and DL-KC, the higher net power output (<i>W</i><sub><i>net</i></sub>) can be gained with decreasing condenser outlet temperature and regenerator temperature difference, and increasing evaporator temperature difference and superheat degree, the lower electricity production cost (<i>EPC</i>) can be acquired with decreasing condenser outlet temperature, evaporator temperature difference and regenerator temperature difference, while the less environment impact load (<i>EIL</i>) can be attained with decreasing condenser outlet temperature, regenerator temperature difference and basic ammonia concentration, and increasing superheat degree. …”
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Tunable Electrical Properties of Embossed, Cellulose-Based Paper for Skin-like Sensing
Published 2020“…The largest increase in conductivity from 8.38 × 10<sup>–6</sup> to 2.5 × 10<sup>–3</sup> S/m by a factor of ∼300 occurred at a percolation threshold of 3.8 wt % (or 0.36 vol %) with the composite paper plastically compressed by 410 MPa, which caused a decrease of porosity from 88% to 42% on average. …”
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Tunable Electrical Properties of Embossed, Cellulose-Based Paper for Skin-like Sensing
Published 2020“…The largest increase in conductivity from 8.38 × 10<sup>–6</sup> to 2.5 × 10<sup>–3</sup> S/m by a factor of ∼300 occurred at a percolation threshold of 3.8 wt % (or 0.36 vol %) with the composite paper plastically compressed by 410 MPa, which caused a decrease of porosity from 88% to 42% on average. …”
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