Search alternatives:
significantly small » significantly smaller (Expand Search), significantly impact (Expand Search), significantly impair (Expand Search)
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
small decrease » small increased (Expand Search)
teer decrease » mean decrease (Expand Search)
significantly small » significantly smaller (Expand Search), significantly impact (Expand Search), significantly impair (Expand Search)
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
small decrease » small increased (Expand Search)
teer decrease » mean decrease (Expand Search)
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1301
Curve fitting of parameter a.
Published 2025“…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
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1302
Results of parameters a, b for curve fitting.
Published 2025“…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
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1303
Physico-chemical property of Ningming Bentonite.
Published 2025“…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
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1304
Curve fitting of parameter b.
Published 2025“…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
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1305
Fully chemistry analysis of silicate.
Published 2025“…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
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1306
The dielectric constant <i>D</i> of the solution.
Published 2025“…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
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1307
Grading curve of the Ningming Bentonite.
Published 2025“…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
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1308
Reconciliation services product value analysis.
Published 2025“…The study reveals several key findings. (1) In the three study areas, afforestation significantly impacts the regulation of service product values. …”
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1309
Means of sampling data in the Shibing study area.
Published 2025“…The study reveals several key findings. (1) In the three study areas, afforestation significantly impacts the regulation of service product values. …”
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1310
Technology roadmap.
Published 2025“…The study reveals several key findings. (1) In the three study areas, afforestation significantly impacts the regulation of service product values. …”
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1311
Zunhua study area factor rotation results.
Published 2025“…The study reveals several key findings. (1) In the three study areas, afforestation significantly impacts the regulation of service product values. …”
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1312
Value of ecological products in the study area.
Published 2025“…The study reveals several key findings. (1) In the three study areas, afforestation significantly impacts the regulation of service product values. …”
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1313
Means of sampling data in the Zunhua study area.
Published 2025“…The study reveals several key findings. (1) In the three study areas, afforestation significantly impacts the regulation of service product values. …”
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1314
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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1315
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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1316
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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1317
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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1318
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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1319
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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1320
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”