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1241
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1242
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1243
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1244
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1245
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1246
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1247
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1248
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1249
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1250
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1251
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1252
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1253
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1254
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1255
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1256
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1257
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1258
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1259
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1260
The top 10 putative metabolites with the largest negative fold change between normal and thin cows.
Published 2025Subjects: