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“Larger Model Is Not All You Need”

Google announces Scaling (Down) CLIP

A comprehensive analysis of data, architecture, and training strategies.

This paper investigates the performance of the Contrastive Language-Image Pre-training (CLIP) when scaled down to…


Researchers in the Yale Department of Cell Biology have created a new microscopy technique that will help unlock the inner workings of cells 100 times faster than current technology allows – and at a fraction of the cost.

Writing in the journal Cell, the Yale team says their FLASH-PAINT technique…


While current microscopy techniques image only a few intracellular molecules at a time, a new technique developed by Yale scientists can help researchers.

Researchers from the National University of Singapore (NUS) have developed a new design concept for creating next-generation carbon-based quantum materials, in the form of a tiny magnetic nanographene with a unique butterfly-shape hosting highly correlated spins. This new design has the potential to accelerate the advancement of quantum materials which are pivotal for the development of sophisticated quantum computing technologies poised to revolutionize information processing and high density storage capabilities.

In a major clean energy benchmark, wind, solar, and hydro exceeded 100% of demand on California’s main grid for 30 of the past 38 days.

Stanford University professor of civil and environmental engineering Mark Z. Jacobson has been tracking California’s renewables performance, and he shares his findings on Twitter (X) when the state breaks records. Yesterday he posted:

Jacobson notes that supply exceeds demand for “0.25−6 h per day,” and that’s an important fact. The continuity lies not in renewables running the grid for the entire day but in the fact that it’s happening on a consistent daily basis, which has never been achieved before.