Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant all » significant anti (Expand Search), significant gap (Expand Search), significant _ (Expand Search)
all decrease » small decrease (Expand Search), a decrease (Expand Search), fold decrease (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant all » significant anti (Expand Search), significant gap (Expand Search), significant _ (Expand Search)
all decrease » small decrease (Expand Search), a decrease (Expand Search), fold decrease (Expand Search)
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Published 2024“…Moreover, the mean of those differences were significantly different for all trainees for LV-GLS (<i>p</i><sub>adj</sub><0.001) and RV-GLS (<i>p</i><sub>adj</sub> = 0.029), and did significantly change over time for RV-GLS (<i>p</i><sub>adj</sub><0.001) but not for LV-GLS.…”
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185
GLS analysis with 2D-STE software.
Published 2024“…Moreover, the mean of those differences were significantly different for all trainees for LV-GLS (<i>p</i><sub>adj</sub><0.001) and RV-GLS (<i>p</i><sub>adj</sub> = 0.029), and did significantly change over time for RV-GLS (<i>p</i><sub>adj</sub><0.001) but not for LV-GLS.…”
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Contact angle between solid and liquid.
Published 2025“…Next, we conducted surface tension tests, contact angle tests and lignite dust settling experiments to screen 12 monomer surfactants, exploring the impact of these solutions on lignite dust wettability. Finally, considering all monomer surfactants’ abilities to reduce surface tension, decrease contact angles and promote dust settling in solutions, we selected five surfactants (AES, MES-30, AEO-9, CDEA and CHSB) for blending based on their excellent performance in tests. …”
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190
Diagram of the experimental equipment.
Published 2025“…Next, we conducted surface tension tests, contact angle tests and lignite dust settling experiments to screen 12 monomer surfactants, exploring the impact of these solutions on lignite dust wettability. Finally, considering all monomer surfactants’ abilities to reduce surface tension, decrease contact angles and promote dust settling in solutions, we selected five surfactants (AES, MES-30, AEO-9, CDEA and CHSB) for blending based on their excellent performance in tests. …”
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191
Sedimentation experimental device.
Published 2025“…Next, we conducted surface tension tests, contact angle tests and lignite dust settling experiments to screen 12 monomer surfactants, exploring the impact of these solutions on lignite dust wettability. Finally, considering all monomer surfactants’ abilities to reduce surface tension, decrease contact angles and promote dust settling in solutions, we selected five surfactants (AES, MES-30, AEO-9, CDEA and CHSB) for blending based on their excellent performance in tests. …”
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192
The wetting feature of compound solutions.
Published 2025“…Next, we conducted surface tension tests, contact angle tests and lignite dust settling experiments to screen 12 monomer surfactants, exploring the impact of these solutions on lignite dust wettability. Finally, considering all monomer surfactants’ abilities to reduce surface tension, decrease contact angles and promote dust settling in solutions, we selected five surfactants (AES, MES-30, AEO-9, CDEA and CHSB) for blending based on their excellent performance in tests. …”
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193
Absorption peaks of groups.
Published 2025“…Next, we conducted surface tension tests, contact angle tests and lignite dust settling experiments to screen 12 monomer surfactants, exploring the impact of these solutions on lignite dust wettability. Finally, considering all monomer surfactants’ abilities to reduce surface tension, decrease contact angles and promote dust settling in solutions, we selected five surfactants (AES, MES-30, AEO-9, CDEA and CHSB) for blending based on their excellent performance in tests. …”
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194
Infrared spectrogram of lignite.
Published 2025“…Next, we conducted surface tension tests, contact angle tests and lignite dust settling experiments to screen 12 monomer surfactants, exploring the impact of these solutions on lignite dust wettability. Finally, considering all monomer surfactants’ abilities to reduce surface tension, decrease contact angles and promote dust settling in solutions, we selected five surfactants (AES, MES-30, AEO-9, CDEA and CHSB) for blending based on their excellent performance in tests. …”
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195
Testing specimens.
Published 2025“…All three types of energies decreased exponentially with increasing loading rate. …”
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196
Comparison of experimental and numerical results.
Published 2025“…All three types of energies decreased exponentially with increasing loading rate. …”
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197
Relationships between crack initiation.
Published 2025“…All three types of energies decreased exponentially with increasing loading rate. …”
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198
Fitting parameters of damage model.
Published 2025“…All three types of energies decreased exponentially with increasing loading rate. …”
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199
Fitting Stress-Strain Curves of M20 Specimen.
Published 2025“…All three types of energies decreased exponentially with increasing loading rate. …”
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Numerical model for mortar-sandstone specimen.
Published 2025“…All three types of energies decreased exponentially with increasing loading rate. …”