Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
列表数据实时取自 GET /api/v1/paths,仅包含存在已发布版本的 Path。
共 7800 条 Path · 第 229 / 780 页
This learning path guides undergraduate engineering students through the fundamental principles and classifications of major energy storage technologies. It covers electrochemical, mechanical, thermal, and chemical storage systems, emphasizing their operational principles, key characteristics, and applications.
This learning path guides undergraduate engineering students through the fundamental science and technologies of converting biomass into energy. It covers biomass types, key conversion processes (combustion, gasification, pyrolysis, anaerobic digestion), and liquid biofuels, with necessary foundations in chemistry and biology.
This learning path guides undergraduate engineering students through the fundamental concepts of geothermal energy, from geological and thermodynamic basics to various power generation technologies and direct use applications. It emphasizes the interconnectedness of geology and thermodynamics in understanding and utilizing geothermal resources.
This learning path guides undergraduate engineering students from fundamental fluid mechanics and energy conversion principles through the core technologies of hydropower and marine energy. It covers dam design, pumped storage, tidal, wave, and ocean thermal systems, concluding with environmental, economic, and case-study applications.
This learning path guides undergraduate engineering students through the fundamental principles of converting wind energy into usable power. It covers the physics of wind resources, aerodynamic principles of turbines, the Betz limit, and practical considerations like power curves and variability.
This learning path provides undergraduate engineering students with a systematic understanding of solar energy capture and conversion. Starting from the physics of solar radiation and optics, it covers photovoltaic and solar thermal technologies, including concentration and resource assessment, to build a solid foundation for engineering applications.
This learning path introduces undergraduate engineering students to the fundamental physics and chemistry underlying nuclear energy. It covers atomic structure, nuclear reactions, fission and fusion, chain reactions, criticality, and radioactive decay, providing a solid foundation for further study in nuclear engineering.
A structured learning path covering the fundamental chemistry and thermodynamics of combustion, from stoichiometry to pollutant formation and control. Designed for undergraduate engineering students seeking a systematic understanding of combustion processes.
A systematic learning path for undergraduate engineering students to analyze the formation, extraction, and use of fossil fuels. The path covers the geological origins of coal, oil, and natural gas, their chemical composition, extraction technologies, combustion chemistry, and environmental emissions, with a foundation in basic chemistry and geology.
This learning path introduces high school students to the classification and global distribution of energy resources. It covers the geological and geographical foundations, the three main categories (fossil fuels, nuclear fuels, and renewables), and key analytical concepts such as reserves versus resources and the Hubbert peak model.