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significantly content » significantly longer (Expand Search), significantly onto (Expand Search), significantly contribute (Expand Search)
content increases » content increased (Expand Search)
we decrease » a decrease (Expand Search), nn decrease (Expand Search), mean decrease (Expand Search)
_ decrease » _ decreased (Expand Search)
significantly content » significantly longer (Expand Search), significantly onto (Expand Search), significantly contribute (Expand Search)
content increases » content increased (Expand Search)
we decrease » a decrease (Expand Search), nn decrease (Expand Search), mean decrease (Expand Search)
_ decrease » _ decreased (Expand Search)
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Dengue virus infection significantly increases cellular fatty acid contents.
Published 2024Subjects: -
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Traits at cellular, leaf, and whole-plant scales which were significantly different [increased (↑) or decreased (↓)] or non-significant between tolerant and sensitive cultivars in the N-deficient treatment.
Published 2023“…<p>Traits at cellular, leaf, and whole-plant scales which were significantly different [increased (↑) or decreased (↓)] or non-significant between tolerant and sensitive cultivars in the N-deficient treatment.…”
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Dengue virus infection significantly reduces cellular acylcarnitine contents.
Published 2024Subjects: -
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Dengue virus infection significantly changes cellular organic acid contents.
Published 2024Subjects: -
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Trend of resistivity changes with increasing water content at different LNAPL contents.
Published 2025Subjects: -
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Image_2_Increasing Precipitation Interval Has More Impacts on Litter Mass Loss Than Decreasing Precipitation Amount in Desert Steppe.JPEG
Published 2020“…However, currently, most studies on the response of litter mass loss to precipitation pattern change focus on the precipitation amount much more than the precipitation frequency. Therefore, we conducted a 3-year manipulative research in a desert steppe to assess the effects of decreasing precipitation amount and increasing precipitation interval on the litter mass loss of Stipa klemenzii and their relationships with litter chemical traits [contents of carbon (C), nitrogen (N), phosphorus (P), potassium (K), lignin and ash, C/N ratio, and lignin/N ratio] and abiotic factors (light intensity and temperature and humidity of soil and air). …”
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Image_1_Increasing Precipitation Interval Has More Impacts on Litter Mass Loss Than Decreasing Precipitation Amount in Desert Steppe.JPEG
Published 2020“…However, currently, most studies on the response of litter mass loss to precipitation pattern change focus on the precipitation amount much more than the precipitation frequency. Therefore, we conducted a 3-year manipulative research in a desert steppe to assess the effects of decreasing precipitation amount and increasing precipitation interval on the litter mass loss of Stipa klemenzii and their relationships with litter chemical traits [contents of carbon (C), nitrogen (N), phosphorus (P), potassium (K), lignin and ash, C/N ratio, and lignin/N ratio] and abiotic factors (light intensity and temperature and humidity of soil and air). …”
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Table_1_Increasing Precipitation Interval Has More Impacts on Litter Mass Loss Than Decreasing Precipitation Amount in Desert Steppe.DOCX
Published 2020“…However, currently, most studies on the response of litter mass loss to precipitation pattern change focus on the precipitation amount much more than the precipitation frequency. Therefore, we conducted a 3-year manipulative research in a desert steppe to assess the effects of decreasing precipitation amount and increasing precipitation interval on the litter mass loss of Stipa klemenzii and their relationships with litter chemical traits [contents of carbon (C), nitrogen (N), phosphorus (P), potassium (K), lignin and ash, C/N ratio, and lignin/N ratio] and abiotic factors (light intensity and temperature and humidity of soil and air). …”
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Table 1_Effect of decreased suspended sediment content on chlorophyll-a in Dongting Lake, China.docx
Published 2025“…The findings showed that, from BIT to AIT, the area proportion of ultraoligotrophic state significantly decreased, while the area proportion of oligotrophic, mesotrophic, and eutrophic states significantly increased, with eutrophic state observed for the first time in 2017. …”