بدائل البحث:
market decrease » marked decrease (توسيع البحث), largest decrease (توسيع البحث), marked increase (توسيع البحث)
teer decrease » mean decrease (توسيع البحث), greater decrease (توسيع البحث)
nn decrease » _ decrease (توسيع البحث), mean decrease (توسيع البحث), gy decreased (توسيع البحث)
a decrease » _ decrease (توسيع البحث), _ decreased (توسيع البحث), _ decreases (توسيع البحث)
a market » _ market (توسيع البحث), a marker (توسيع البحث)
load a » load _ (توسيع البحث), load b (توسيع البحث)
market decrease » marked decrease (توسيع البحث), largest decrease (توسيع البحث), marked increase (توسيع البحث)
teer decrease » mean decrease (توسيع البحث), greater decrease (توسيع البحث)
nn decrease » _ decrease (توسيع البحث), mean decrease (توسيع البحث), gy decreased (توسيع البحث)
a decrease » _ decrease (توسيع البحث), _ decreased (توسيع البحث), _ decreases (توسيع البحث)
a market » _ market (توسيع البحث), a marker (توسيع البحث)
load a » load _ (توسيع البحث), load b (توسيع البحث)
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1
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2
The motor torque curves of load increase/decrease (A) the load of 10 N • m (B) the load of 20 N • m.
منشور في 2025"…<p>The motor torque curves of load increase/decrease (A) the load of 10 N • m (B) the load of 20 N • m.…"
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3
The motor speed curves of load increase/decrease (A) the load of 10 N • m (B) the load of 20 N • m.
منشور في 2025"…<p>The motor speed curves of load increase/decrease (A) the load of 10 N • m (B) the load of 20 N • m.…"
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4
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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5
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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6
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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7
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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8
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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9
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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10
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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11
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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12
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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13
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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14
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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15
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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16
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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17
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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18
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
منشور في 2025"…The optimal nanoparticle concentration reaches approximately 88.8% under high-load conditions, with each 3.55% increase in concentration resulting in a 0.45% reduction in structural deformation and a 0.59 nN decrease in friction. …"
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19
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20