Før Memmo var notatene mine spredt overalt i PDF-er. Nå samler et arbeidsområde alt på ett sted – jeg ser akkurat hva som gjenstår å studere.
This book invites readers to explore the frontiers of atomic, molecular, and optical physics — and what lies beyond. Atomic and molecular physics is relevant to everything around us, because everything in our immediate environment is made up of atoms and molecules. That said, there are a multitude of fascinating things in the world that cannot be thought of as merely a collection of atoms and molecules. How is it that, when matter grows from a single atom or molecule into a larger and larger system, a new reality emerges with all its specific features and properties? To what extent are the properties of larger systems determined by the properties of individual atoms and molecules, rather than by the properties of the whole system as it grows? At what scales do new properties appear in the system, and how do they influence other properties in the system? This book does not provide definitive answers to these questions, but rather points the way to their resolution by presenting concrete, solvable case studies from various fields that can provide some elucidation.
With contributions from leading scientists, the book covers a wide range of topics — from multiscale computational modelling, nanoscience, and plasmonic chemistry to radiation damage in biomolecular systems and the foundations of astrochemistry. Many of the research areas addressed are closely related to cutting-edge technological and medical applications, such as radiotherapy and 3D nanoprinting. Ideal for researchers and advanced students across the physical and life sciences, the volume offers a rich exploration of how physics intersects with emerging technologies and global scientific challenges.
Contents:
Readership: The book is intended for graduate students and specialists in the fields of physics, chemistry, biology, and medicine related to atomic and molecular physics, physics and chemistry of condensed matter systems, multiscale phenomena in condensed matter systems, materials science, interaction of radiation with condensed matter physics, astrochemistry, radiation nanophysics, biophysics, the physics of interaction of charged particles with matter and hadron or ion beam therapy, nanofabrication techniques, and multiscale computational modelling.
Før Memmo var notatene mine spredt overalt i PDF-er. Nå samler et arbeidsområde alt på ett sted – jeg ser akkurat hva som gjenstår å studere.
Memmos sammendrag er gull før eksamen. Jeg slipper å lese 800 sider to uker før – bare det viktigste.
AI-chatten har reddet meg kvelden før eksamen mer enn én gang. Jeg bare spør til jeg forstår – slipper å vente på svar i en studiegruppe.
Quizene treffer akkurat det jeg trenger å vite. Memmo holder styr på hva jeg sliter med – så jeg øver bare på det som er verdt det.
Flashcards med repetisjon over tid er magi. Memmo vet når jeg er i ferd med å glemme noe og viser det igjen.
AI-podkastene er min favoritt. Jeg lytter på vei til skolen og får en repetisjon uten å sitte foran en datamaskin.
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