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Deposit, archive and share your final research data in DR-NTU (Data)

DR-NTU (Data) is for research data deposit. For research paper deposits, please use DR-NTU.

Mission: DR-NTU (Data) curates, stores, preserves, makes available and enables the download of digital data generated by the NTU research community. The repository develops and provides guidance for managing, sharing, and reusing research data to promote responsible data sharing in support of open science and research integrity.

Who can deposit? NTU faculty, research staff and students.

What can be deposited? Final, non-sensitive research data from projects carried out at NTU. The uploaded content must not infringe upon the copyrights or other intellectual property rights, and must be void of all identifiable information.

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71,811 to 71,820 of 72,597 Results
Sep 13, 2018 - Final Year Projects
Ng, Ken Jo, 2018, "Socially Aware Flocking - Simulation Code", https://doi.org/10.21979/N9/KQXXCG, DR-NTU (Data), V1
Artificial Intelligence (AI) has become an increasingly important and popular topic not just within the field of Computer Science but also the world at large. One of the current challenges in the field of AI is multi-agent planning, of which Swarm Intelligence (SI) is a possible...
Shapefile as ZIP Archive - 197.6 MB - MD5: e698c1cf3bcd52be183c5d47f10f21ee
Shapefile as ZIP Archive - 124.8 MB - MD5: fbb0e8b779f47742ec4924c95173817b
Plain Text - 35.0 KB - MD5: afa8ca4047d187ed5ed496aee32e6f76
GNU GENERAL PUBLIC LICENSE Version 3, 29 June 2007
ZIP Archive - 751.3 KB - MD5: 4c1dd64c7e031061f6b7961e49c369b8
Contains the GAMA Project "FYPFinal" which has the flocking model for this project.
Sep 10, 2018 - SUM Tze Chien
Chong, Wee Kiang; Thirumal, Krishnamoorthy; Giovanni, David; Goh, Teck Wee; Liu, Xinfeng; Mathews, Nripan; Mhaisalkar, Subodh; Sum, Tze Chien, 2018, "Replication Data for: Dominant factors limiting the optical gain in layered two-dimensional halide perovskite thin films", https://doi.org/10.21979/N9/WJSVVC, DR-NTU (Data), V1
Semiconductors are ubiquitous gain media for coherent light sources. Solution-processed three-dimensional (3D) halide perovskites (e.g., CH3NH3PbI3) with their outstanding room temperature optical gain properties are the latest members of this family. Their two-dimensional (2D) l...
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