Skip to main content


AI Agents vs. Agentic AI: What's the Real Difference?

Discover the fascinating evolution from standard AI agents—designed to follow instructions and deliver results—to the groundbreaking world of Agentic AI. In this video, we explore how Agentic AI goes beyond basic commands by autonomously setting its own goals, creating adaptive plans, and acting with true intention. Learn about the exciting potential applications of agentic systems, from personalized virtual assistants to autonomous scientific research, as well as the significant risks and ethical challenges that arise when AI is granted more autonomy. If you find this topic interesting, don’t forget to like and share the video to spark more discussion!

Website: innovationtechnologist.com Contact: contact@innovationtechnologist.com Nomination: innovationtechnologist.com/award-n...

#sciencefather #researchawards #ArtificialIntelligence #AgenticAI #Professor, #Lecturer, #Scientist, #Scholar, #Researcher, #Analyst, #Engineer, #Technician, #Coordinator, #Specialist, #Writer, #Assistant, #Associate, #Biologist, #Chemist, #Physicist, #Statistician, #DataScientist, #Consultant, #Coordinator, #ResearchScientist

Comments

Popular posts from this blog

Smart Farming: Tackling Tomato Leaf Disease with AI! #sciencefather #res...

Nanohole-in-Microsphere Array: The Gamechanger for RA Diagnosis! #scienc...

Phosphorus-rich Grains In Ryugu Samples With Major Biochemical Potential

Parent bodies of C-type asteroids may have brought key volatile and organic-rich compounds to the terrestrial planets in the early stages of the Solar System . At the end of 2020, the JAXA Hayabusa2 mission successfully returned samples from Ryugu, providing access to a primitive matter that has not suffered terrestrial alteration. Here we report the discovery of a peculiar class of grains, up to a few hundreds of micrometres in size, that have a hydrated ammonium–magnesium–phosphorus (HAMP)-rich composition. Their specific chemical and physical properties point towards an origin in the outer Solar System , beyond most snow lines, and their preservation along Ryugu history. These phosphorus-rich grains, embedded within an organic-rich phyllosilicate matrix, may have played a major role when immersed in primitive terrestrial water reservoirs. In particular, in contrast to poorly soluble calcium-rich phosphates, HAMP grains favour the release of phosphorus-rich and nitrogen-rich ionic s...