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sizes decrease » scores decreased (Expand Search), rivers decreased (Expand Search)
large decrease » larger decrease (Expand Search), marked decrease (Expand Search), large increases (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), mean decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a large » _ large (Expand Search)
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Sample size and span size diagram.
Published 2025“…The samples mainly experience tensile failure, with shear failure as a supplement. Fracture toughness decreased as the angle between the crack and loading direction diminished. …”
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Conformational Role of Methyl in the Potency of Cyclohexane-Substituted Squaramide CCR6 Antagonists
Published 2025“…Evidence generated through the characterization of conformationally restricted analogues supports the conclusion that the large potency enhancement is the result of the methyl substituent biasing the cyclohexane ring ground state conformation to favor that of the bound ligand and thus decreasing the ligand strain energy.…”
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Conformational Role of Methyl in the Potency of Cyclohexane-Substituted Squaramide CCR6 Antagonists
Published 2025“…Evidence generated through the characterization of conformationally restricted analogues supports the conclusion that the large potency enhancement is the result of the methyl substituent biasing the cyclohexane ring ground state conformation to favor that of the bound ligand and thus decreasing the ligand strain energy.…”
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Conformational Role of Methyl in the Potency of Cyclohexane-Substituted Squaramide CCR6 Antagonists
Published 2025“…Evidence generated through the characterization of conformationally restricted analogues supports the conclusion that the large potency enhancement is the result of the methyl substituent biasing the cyclohexane ring ground state conformation to favor that of the bound ligand and thus decreasing the ligand strain energy.…”
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Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates
Published 2025Subjects: -
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Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates
Published 2025Subjects: -
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Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates
Published 2025Subjects: -
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Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates
Published 2025Subjects: -
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Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates
Published 2025Subjects: -
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Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates
Published 2025Subjects: -
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