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 220 / 780 页
This learning path introduces the basic physical principle of the photovoltaic effect, starting from semiconductor fundamentals and building up to the operation of a solar cell. It covers key concepts such as the p-n junction, bandgap, photon absorption, and current flow, providing a solid foundation for understanding how sunlight is converted into electricity.
This learning path guides high school students from basic geometry and trigonometry to calculating key solar angles (declination, altitude, azimuth, incidence) and estimating direct and diffuse radiation on surfaces. It builds a solid foundation for understanding solar energy systems and their orientation.
A beginner-friendly path for high school students to understand the basic principles and importance of solar energy. Starting from the physics of solar radiation, learners will explore the solar spectrum, solar constant, and irradiance, and finally examine the global distribution of solar resources.
This path equips graduate students and beginning researchers with the essential skills to design, conduct, and communicate rigorous research in renewable energy. It covers problem formulation, literature review, experimental and simulation methodologies, data analysis, scientific writing and presentation, research ethics, and reproducibility. The sequence follows logical dependencies, starting with foundational research design and progressing through advanced data and communication skills.
This advanced graduate-level path equips learners with the knowledge to analyze wave energy converter (WEC) designs and performance. It covers the fundamentals of wave hydrodynamics, WEC archetypes, power take-off systems, and performance metrics, with a focus on point absorbers, attenuators, and oscillating water columns.
This graduate-level path provides a comprehensive understanding of Ocean Thermal Energy Conversion (OTEC) technology, from fundamental thermodynamics to advanced engineering challenges and feasibility assessment. Learners will analyze the thermodynamic cycles, major components, environmental impacts, and economic viability of OTEC systems.
This graduate-level path explores the science and engineering of artificial photosynthesis, from fundamental photoelectrochemistry to the design of systems for water splitting and CO2 reduction. It covers semiconductor physics, catalytic mechanisms, and device architectures, culminating in an integrated understanding of solar fuel production.
This learning path provides graduate students and researchers with a comprehensive understanding of floating wind turbine technology, covering platform types, mooring systems, dynamic cables, and deep-water applications. It builds on advanced wind and offshore engineering knowledge, emphasizing the analysis and design of floating systems.
This advanced learning path explores cutting-edge photovoltaic technologies, focusing on perovskite solar cells, tandem architectures, organic photovoltaics, and quantum dot solar cells. It covers the underlying materials science, device physics, stability challenges, and future application potential. Designed for graduate students and researchers with a background in semiconductor physics and materials science.
This advanced graduate-level path explores cutting-edge solar photovoltaic technologies poised to shape future energy applications. Learners will delve into the fundamental materials science and device physics underpinning perovskite solar cells, tandem architectures, organic photovoltaics, and quantum dot solar cells, with a focus on stability, performance, and commercialization challenges.