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Hamad Bin Khalifa University

Sponsored Research Office

The Sponsored Research Office (SRO) was launched in December 2016 under the Hamad Bin Khalifa University (HBKU) Vice President for Research Office. The SRO contributes to HBKU’s academic and research mission through the provision of pre-award and post-award management for all sponsored research projects.

Outcomes Filters

Outcome title Journal/Chapter Home Entity Research Areasort descending Type KI Authors Lead Name
Surface Atomic Packing Fraction as a Figure of Merit for the Structural Transition and the Bulk-to-nano Transformation of Spherical FCC and BCC Nanosolids QEERI Natural Sciences Online Paper Dr. Brahim Aïssa Dr. Brahim Aïssa
Gravitational Binary-lens Events with Prominent Effects of Lens Orbital Motion Astrophysical Journal QEERI Natural Sciences Journal Paper
OGLE-LMC-ECL-11893: The Discovery of a Long-Period Eclipsing Binary with a Circumstellar Disk QEERI Natural Sciences Online Paper
Adaptive Q-Learning for Data-Based Optimal Output Regulation With Experience Replay IEEE Transactions on Cybernetics CSE Natural Sciences Journal Paper Dr. David Yin Yang Dr. David Yin Yang
Close Examination of the Structure and Dynamics of HC(NH2)2PbI3 by MD Simulations and Group Theory Physical Chemistry Chemical Physics QEERI Natural Sciences Journal Paper
EMCCD Photometry Reveals Two New Variable Stars in the Crowded Central Region of the Globular Cluster NGC 6981 Astronomy & Astrophysics QEERI Natural Sciences Journal Paper
Effect of Time-Delayed Feedback on the Interaction of a Dimer System with its Environment Scientific Reports QEERI Natural Sciences Journal Paper
Mechanism of Isomerization and Methyl Migration in Heterobimetallic Rhenium–Iridium Complexes: Experimental and DFT Study Organometallics QEERI Natural Sciences Journal Paper
Microlensing Events by Proxima Centauri in 2014 and 2016: Opportunities for Mass Determination and Possible Planet Detection Astrophysical Journal QEERI Natural Sciences Journal Paper
Solution-Processed Perovskite-Colloidal Quantum Dot Tandem Solar Cells for Photon Collection Beyond 1000 nm Journal of Materials Chemistry A QEERI Natural Sciences Journal Paper