1,201 to 1,210 of 1,217 Results
Feb 22, 2019
Asia Pacific leads the world in air transportation growth. To sustain such growth, continued effort for the modernisation and harmonisation of operation and management of the regional airspace is essential. It was timely that in 2013, the Civil Aviation Authority of Singapore (CA... |
Jan 1, 2019 -
Related data for: Visual hull based 3D reconstruction of shocks in under-expanded supersonic bevelled jets
RAR Archive - 9.5 MB -
MD5: 589fe8092a4903c9be5c9792db9a6d87
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Jan 1, 2019
Appointment: Associate Professor Research topics: • Jet mixing and control enhancements • Jet in cross-flow phenomenon • Impinging jets and vortex-rings • Vortex dynamics and flow physics • Experimental aerodynamics • Marine and aerospace propulsion |
Nov 17, 2018 -
Replication Data for: Wetting transition of sessile and condensate droplets on copper-based superhydrophobic surfaces
Adobe PDF - 256.6 KB -
MD5: 076280525f71ceabaea8eb962cabb90f
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Nov 17, 2018 -
Replication Data for: Wetting transition of sessile and condensate droplets on copper-based superhydrophobic surfaces
Adobe PDF - 111.2 KB -
MD5: 693a6d2276d3129723ada2ec16d5267a
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Nov 17, 2018 -
Replication Data for: Wetting transition of sessile and condensate droplets on copper-based superhydrophobic surfaces
Adobe PDF - 138.6 KB -
MD5: ef9d631924aaa3c13de414d80e49c8e0
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Nov 17, 2018 -
Replication Data for: Wetting transition of sessile and condensate droplets on copper-based superhydrophobic surfaces
Adobe PDF - 573.8 KB -
MD5: 2af792a872f2c45ae00cd3cd647040e6
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Nov 17, 2018 -
Replication Data for: Wetting transition of sessile and condensate droplets on copper-based superhydrophobic surfaces
Adobe PDF - 101.1 KB -
MD5: 9e7d68d42a6521e79adcc76fe616aa6f
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Nov 17, 2018 -
Replication Data for: Wetting transition of sessile and condensate droplets on copper-based superhydrophobic surfaces
Adobe PDF - 108.5 KB -
MD5: 2999a92eb72633b87c25fe3f0ad3ed0b
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Nov 17, 2018 -
Replication Data for: Wetting transition of sessile and condensate droplets on copper-based superhydrophobic surfaces
Adobe PDF - 168.3 KB -
MD5: fb2ba20f2dbd1d1507b0075d22b499b9
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