Exact(9)
We also explore the potential performance gains of OpenCL's device fissioning capability, demonstrating up to a 3× speed-up over our original OpenCL implementation.
This led to the design and synthesis of potent Aurora-A inhibitors demonstrating up to 70-fold selectivity in cell-based Aurora kinase pharmacodynamic biomarker assays.
The values of the electrochemically active surface area as well as the mass and surface specific activities depend on the preparation process with the most active catalysts demonstrating up to 4.5 fold activity enhancement compared to commercial Pt/C.
Results are promising, with bench-scale tests demonstrating up to 63% removal of Al, 62% Zn, 47% Cd, 22% Mn and 23% As, during just seven hours exposure to the plant.
Herein, we showed the scalable synthesis of self-standing sulfur-doped flexible graphene films as the anode materials for SIBs, demonstrating up to 377 mA h g−1 capacity at 100 mA g−1 current density as well as an excellent rate capability and a moderate decay rate of 0.106% per cycle during long cycling test.
Finally, initial numerical results are presented, demonstrating up to 60% improvement in both system's performance increase and overall power consumption savings.
Similar(51)
The multi-GPU scalability is demonstrated up to 256 devices.
These improvements have demonstrated up to 50% reduction in energy and doubling the lifespan of the bulbs.
Radiation tolerance has been demonstrated up to 100 Mrad of total dose.
We additionally demonstrate up to 17 months of stable performance for sub-cells within the modules.
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 °C herein.
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