ARTIFICIAL INTELLIGENCE IN CHEMISTRY Artificial Intelligence (AI) has become a game-changer in many industries, and chemistry is no exception. From discovering new drugs to developing advanced materials, AI is helping chemists solve problems faster and more efficiently than ever before. But how exactly is AI transforming the field of chemistry, and what does it mean for the future? In this blog, we will explore how AI is being used in chemistry, the benefits it brings, and the exciting possibilities that lie ahead. What Is Artificial Intelligence? Artificial Intelligence refers to the development of computer systems that can perform tasks that typically require human intelligence. These tasks include learning,problem-solving, recognizing patterns, and making decisions. Unlike traditional software, which follows a set of programmed instructions, AI can adapt and improve over time through experience. In chemistry, AI tools can analyze massive amounts of data, predict chemical reactions, ...
Hybridization This is the one inter mixing of phenomenon of atomic orbital explain the formation of covalent bond as well as geometry of molecules. Definition:- When two or more atomic orbitals having nearly same energy intermixed with each other give rise new orbital equivalent shape and energy and are called hybrid orbitals but the shape and energy of the hybrid orbitals are different and from the parent atomic orbitals and this phenomenon is equal hybridization. Hybridization takes place in two step (1)Excitation (2)Intermixing. Conditions for hybridization:- Atomic orbitals of only one and same atom can be inter mixed. The atomic orbitals should have nearly same energy. 3. Only the atomic orbitals but not the electrons get hybridised...