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step decrease » sizes decrease (Expand Search), teer decrease (Expand Search), we decrease (Expand Search)
nn decrease » _ decrease (Expand Search), gy decreased (Expand Search), b1 decreased (Expand Search)
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Sensitivity-Controllable Liquid-Metal-Based Pressure Sensor for Wearable Applications
Published 2021“…Integration of E-bumps has increased the average sensitivity of the sensor to 0.0727 kPa<sup>–1</sup> (5.43 times higher), and A-bump integration has decreased the average sensitivity to 0.0004 Pa<sup>–1</sup> (91.65 times lower) in the range of 0–50 kPa, as compared to the pressure sensor without any microbumps. …”
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5951
Sensitivity-Controllable Liquid-Metal-Based Pressure Sensor for Wearable Applications
Published 2021“…Integration of E-bumps has increased the average sensitivity of the sensor to 0.0727 kPa<sup>–1</sup> (5.43 times higher), and A-bump integration has decreased the average sensitivity to 0.0004 Pa<sup>–1</sup> (91.65 times lower) in the range of 0–50 kPa, as compared to the pressure sensor without any microbumps. …”
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5952
Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties
Published 2023“…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
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5953
Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties
Published 2023“…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
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5954
Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties
Published 2023“…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
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5955
Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties
Published 2023“…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
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5956
Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties
Published 2023“…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
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5957
Data_Sheet_1_Bather Shedding as a Source of Human Fecal Markers to a Recreational Beach.pdf
Published 2021“…Offshore sources appeared unlikely, since FIB and fecal markers decreased along a spatial gradient from the surf zone toward nearshore and offshore ocean waters. …”
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5958
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5959
Assessing resolution and calibration of confidence.
Published 2024“…We found that temperature scaling indeed reduced overconfidence in all networks (4-layer CNN: confidence decreased from 0.968 to 0.737; VGG-10: confidence decreased from 0.964 to 0.783, ResNet-50: confidence decreased from 0.982 to 0.748). …”
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5960
Ultraflexible Oxide Fibers with an Amorphous Silica Interfacial Layer on Zirconia Nanograins
Published 2025“…The design of flexible, bendable, and high-strength ZSFMs offers a method for using brittle ceramic components in military and civilian applications and many other fields.…”