Explore how Lawrence Berkeley Laboratory's Chemical Sciences Division is advancing catalysis, energy storage, and sustainability through cutting-edge chemical research.
Explore how machine learning is transforming reactive molecular dynamics simulations, enabling unprecedented insights into chemical reactions and molecular behavior.
Explore how molecular dynamics simulations reveal the hidden behavior of cesium fluoride in aqueous solutions through computational microscopy.
Explore the breakthrough of red fluorescent calcium probes revolutionizing cellular imaging and our understanding of cellular communication.
Explore the groundbreaking technology of single-molecule electrical detection that enables label-free observation of molecular processes with unprecedented sensitivity.
Discover how computational chemistry reveals the hidden role of nucleotide radicals in DNA and RNA synthesis, with implications for evolution, medicine, and nanotechnology.
Explore how molecular docking and dynamics simulations are revolutionizing drug discovery, using the Influenza Virus M2 Protein as a case study.
In an idyllic Caribbean setting, top computer scientists are rethinking how intelligent systems truly understand the world.
Research on how ER-associated degradation pathways influence mitochondrial dynamics and function in brown adipose tissue.
Explore the molecular crosstalk between skeletal muscle atrophy and KRAS-mutant pancreatic cancer, and discover promising new treatments.