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Guided learning journeys that build knowledge step by step.
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7819 Paths · page 648 / 782
This learning path teaches high school students to recognize and name major organic functional groups, including alkyl halides, alcohols, ethers, amines, aldehydes, ketones, carboxylic acids, esters, and amides. It starts with foundational concepts of organic chemistry and builds up to the identification and naming of each functional group.
This learning path guides high school students from the basics of tetrahedral carbon geometry to understanding chirality, identifying chiral centers, and grasping the properties of enantiomers, including optical activity and racemic mixtures.
A systematic learning path for high school students to master naming, drawing, and understanding conformations of saturated hydrocarbons. It covers IUPAC nomenclature, structural isomerism, conformational analysis, cycloalkane strain, and cis-trans isomerism.
This path introduces students to the unique nature of carbon and the scope of organic chemistry. Starting from general chemistry bonding, it covers carbon's tetravalency, hybridization, sigma and pi bonds, bond polarity, and an overview of functional groups, providing a solid foundation for further study.
A comprehensive learning path for aspiring chemistry researchers, covering the full research lifecycle from formulating questions to communicating results. It integrates foundational chemistry knowledge with experimental design, data analysis, ethics, reproducibility, and professional communication skills.
This learning path explores the molecular basis of olfaction and gustation, from fundamental chemistry to the synthesis of flavor and fragrance compounds. Learners will understand how volatile organic compounds, molecular structure, and chirality influence sensory perception, and gain practical knowledge of essential oils, extraction techniques, and flavor synthesis.
This advanced learning path for university pre-medical and health science students covers the chemical principles underlying drug action and diagnostic agents. It builds from general and organic chemistry foundations through pharmacodynamics, drug design concepts, and specific applications including prodrugs, chelation therapy, contrast agents, and radiopharmaceuticals.
This advanced learning path explores the chemistry of the interstellar medium and the origins of molecules in the universe. Starting with atomic structure and spectroscopy, it progresses through interstellar chemistry, star formation, and prebiotic molecule synthesis, culminating in the molecular origins of life.
This learning path introduces students to the chemical principles underlying the analysis, preservation, and understanding of artworks. It covers the composition and degradation of pigments, dyes, and varnishes, as well as the analytical techniques used by conservators, while emphasizing the ethical framework guiding conservation decisions.
This advanced learning path explores the chemistry underlying nanomaterials, focusing on their unique properties arising from size and surface effects. It covers synthesis, characterization, and applications, building from foundational concepts in bonding and materials chemistry. Designed for university students interested in nanotechnology, the path integrates theory with practical understanding.