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marked decrease » marked increase (Expand Search)
large decrease » large increases (Expand Search), large degree (Expand Search)
c decrease » _ decrease (Expand Search), a decrease (Expand Search), rc decreased (Expand Search)
third c » third _ (Expand Search), third h (Expand Search), third 33 (Expand Search)
marked decrease » marked increase (Expand Search)
large decrease » large increases (Expand Search), large degree (Expand Search)
c decrease » _ decrease (Expand Search), a decrease (Expand Search), rc decreased (Expand Search)
third c » third _ (Expand Search), third h (Expand Search), third 33 (Expand Search)
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Data Sheet 1_Emotional prompting amplifies disinformation generation in AI large language models.docx
Published 2025“…Introduction<p>The emergence of artificial intelligence (AI) large language models (LLMs), which can produce text that closely resembles human-written content, presents both opportunities and risks. …”
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A novel RNN architecture to improve the precision of ship trajectory predictions
Published 2025“…To solve these challenges, Recurrent Neural Network (RNN) models have been applied to STP to allow scalability for large data sets and to capture larger regions or anomalous vessels behavior. …”
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Supplementary file 1_Bupropion decreases plasma levels of asymmetric dimethylarginine and ameliorates renal injury by modulation of Ddah1, Oatp4c1, Oct2, and Mate1 in rats with ade...
Published 2025“…</p>Conclusion<p>Bupropion moderately decreases plasma levels of ADMA and ameliorates renal injury by modulation of Ddah1, Oatp4c1, Oct2, and Mate1.…”
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O<sub>2</sub> concentration under different conditions.
Published 2025“…The experimental findings indicate that within the air flow range of 25–100 mL/min during the entire oxidation process (40–170°C) and in the first oxidation stage (40–90°C) at 200 mL/min air flow, the oxygen consumption rate and exothermic intensity of the coal samples were significantly higher than those in the primary oxidation process; however, in the second and third oxidation stages (100–170°C) at 200 mL/min air flow, the opposite characteristics were manifested. …”
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This is the paper’s data.
Published 2025“…The experimental findings indicate that within the air flow range of 25–100 mL/min during the entire oxidation process (40–170°C) and in the first oxidation stage (40–90°C) at 200 mL/min air flow, the oxygen consumption rate and exothermic intensity of the coal samples were significantly higher than those in the primary oxidation process; however, in the second and third oxidation stages (100–170°C) at 200 mL/min air flow, the opposite characteristics were manifested. …”