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significantly improve » significantly improved (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
improve decrease » improve disease (Expand Search), improved urease (Expand Search), improves disease (Expand Search)
significantly improve » significantly improved (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
improve decrease » improve disease (Expand Search), improved urease (Expand Search), improves disease (Expand Search)
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1741
Location of monitored piles.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1742
Axial force in the pressure zone.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1743
Pile-soil interaction.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1744
Bending moment in the tension zone.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1745
Proteome and Metabolome Profiling of Anticoagulant Disorders Induced by Familial Protein S Deficiency
Published 2024“…Furthermore, 9 differential proteins correlated significantly with protein S, comprising A2M, AGT, APOE, FGG, GPLD1, IGHV1–69, CFHR5, CPN2, and CA1. …”
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1746
Sketch of forces on vertical and inclined piles.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1747
Proteome and Metabolome Profiling of Anticoagulant Disorders Induced by Familial Protein S Deficiency
Published 2024“…Furthermore, 9 differential proteins correlated significantly with protein S, comprising A2M, AGT, APOE, FGG, GPLD1, IGHV1–69, CFHR5, CPN2, and CA1. …”
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1748
Displacement cloud maps.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1749
Proteome and Metabolome Profiling of Anticoagulant Disorders Induced by Familial Protein S Deficiency
Published 2024“…Furthermore, 9 differential proteins correlated significantly with protein S, comprising A2M, AGT, APOE, FGG, GPLD1, IGHV1–69, CFHR5, CPN2, and CA1. …”
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1750
Morphing mesh.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1751
Proteome and Metabolome Profiling of Anticoagulant Disorders Induced by Familial Protein S Deficiency
Published 2024“…Furthermore, 9 differential proteins correlated significantly with protein S, comprising A2M, AGT, APOE, FGG, GPLD1, IGHV1–69, CFHR5, CPN2, and CA1. …”
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1752
Proteome and Metabolome Profiling of Anticoagulant Disorders Induced by Familial Protein S Deficiency
Published 2024“…Furthermore, 9 differential proteins correlated significantly with protein S, comprising A2M, AGT, APOE, FGG, GPLD1, IGHV1–69, CFHR5, CPN2, and CA1. …”
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1753
Proteome and Metabolome Profiling of Anticoagulant Disorders Induced by Familial Protein S Deficiency
Published 2024“…Furthermore, 9 differential proteins correlated significantly with protein S, comprising A2M, AGT, APOE, FGG, GPLD1, IGHV1–69, CFHR5, CPN2, and CA1. …”
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1754
Bending moment in the pressure zone.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1755
Axial forces in the tension zone.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1756
VPF and VIPF.
Published 2025“…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
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1757
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1758
Flow of operation of improved KMA.
Published 2025“…The computational complexity of the improved model decreased dramatically, but the average classification accuracy was only 1.6% lower than that before the improvement. …”
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1759
Improved DAE based on LSTM.
Published 2025“…The computational complexity of the improved model decreased dramatically, but the average classification accuracy was only 1.6% lower than that before the improvement. …”
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1760
Improving Cu<sub>2</sub>ZnSnS<sub>4</sub>‑Based Photocathodes for Solar Water Splitting via SnO<sub>2</sub> Overlayers
Published 2024“…Herein, we use SnO<sub>2</sub> to modify the CdS/Cu<sub>2</sub>ZnSnS<sub>4</sub> photocathode by a straightforward spin-coating process, significantly improving the photoelectrode efficiency and stability. …”