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 200 / 780 页
This learning path introduces high school biology students to the major bones of the human body and the functions of the skeletal system. It covers the axial and appendicular skeletons, bone types, major bone markings, and joints, providing a foundational understanding of osteology.
This learning path introduces the scope, terminology, and organizational levels of the human body. It covers anatomical position, directional terms, body planes, body cavities, an overview of organ systems, and the concept of homeostasis, providing a foundational framework for further study in anatomy and physiology.
This learning path equips graduate students and beginning researchers with essential skills and methodologies for conducting research in energy systems. It covers problem formulation, literature review, methodology selection, data analysis, scientific communication, research ethics, and reproducibility, with a focus on modeling, case studies, and data-driven approaches.
This learning path equips graduate students and beginning researchers with essential skills and methodologies for conducting research in energy systems. It covers research problem formulation, literature review, methodology selection, data analysis, scientific communication, research ethics, and reproducibility, with a focus on applying these to energy systems research.
This learning path explores the design, operation, and challenges of energy systems for space applications, covering space solar power, lunar and Mars energy systems, and nuclear power. It builds from foundational principles of space environment and energy conversion to advanced system architectures and comparisons, preparing graduate students and researchers to analyze and propose energy solutions for space missions.
This advanced graduate-level path explores negative emissions technologies (NETs) within energy systems, covering BECCS, DAC, carbon sinks, and their integration with energy infrastructure. It builds from climate and energy system fundamentals to advanced assessment and integration challenges.
This advanced graduate-level learning path equips learners with the knowledge and skills to analyze resilience strategies for energy systems facing extreme events. It covers climate impacts, extreme weather, security threats, and resilience planning, building from foundational energy system and risk concepts to advanced resilience frameworks and applications.
This learning path guides graduate students and researchers from foundational blockchain concepts to advanced applications in energy systems, including peer-to-peer trading, smart contracts, decentralized systems, and security. It bridges the gap between energy domain knowledge and blockchain technology, providing a structured approach to understanding and designing blockchain-based energy solutions.
This advanced graduate-level path equips learners with the knowledge to apply deep learning, reinforcement learning, predictive control, and optimization to energy systems. It covers foundational energy system modeling, data analytics, machine learning, and optimization, culminating in integrated AI-driven applications for operations and planning.
This learning path equips professional engineers and analysts with the knowledge and skills to analyze the impacts of regulations on energy systems. It covers foundational energy system concepts, regulatory frameworks, compliance, and impact analysis methods, culminating in a capstone project.