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。
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共 7800 条 Path · 第 134 / 780 页
This learning path equips post-harvest engineers with the knowledge to design safe, efficient grain storage systems. It covers grain properties, thermodynamics, bin design, aeration, moisture control, conveying, and safety, emphasizing the integration of these elements for optimal storage outcomes.
This learning path equips agricultural engineers with a foundational understanding of power sources and transmission systems used in modern agriculture. It covers thermodynamics, internal combustion engines, electric motors, PTO systems, and hydraulic power transmission, emphasizing practical applications and system integration.
This learning path equips agricultural engineers with the knowledge to design effective drainage systems for agricultural lands. It covers soil mechanics fundamentals, drainage principles, and the design of subsurface drains, open ditches, and water table management strategies. The path emphasizes practical application and design considerations for career readiness.
This learning path equips water resource engineers with the knowledge and skills to design efficient sprinkler, drip, and surface irrigation systems. It covers soil-water relationships, hydraulics, system components, uniformity, and scheduling, culminating in practical design projects.
A structured learning path for mechanical engineers to master the design and evaluation of farm equipment, covering stress analysis, power transmission, hydraulic systems, and ergonomics, with a focus on practical application in agricultural machinery.
This learning path equips agricultural engineers with the thermodynamic principles needed to analyze and design processes for drying, cooling, and heating agricultural products. Starting with fundamental thermodynamics and heat transfer, it progresses through psychrometrics, refrigeration cycles, and drying principles, culminating in integrated design applications. Each node builds on prior knowledge to ensure a systematic understanding of the underlying physics and engineering applications.
This learning path equips agricultural engineers with the foundational principles of fluid mechanics and their application to irrigation and drainage systems. Starting with essential calculus and fluid properties, it progresses through hydrostatics, fluid dynamics, pipe flow, pumps, and open-channel flow, culminating in the practical design and analysis of irrigation and drainage networks.
This learning path provides a systematic foundation in soil mechanics tailored for agricultural and civil engineers. It covers soil classification, compaction, shear strength, and bearing capacity, with emphasis on their application to engineering design such as foundations and earthworks.
This learning path introduces engineering students to materials science fundamentals and their application in agricultural engineering. Learners will explore metals, polymers, composites, corrosion, and the systematic selection of materials for agricultural tools and structures, supported by essential chemistry basics.
This learning path introduces drafting beginners to the core concepts of engineering drawing, with a focus on agricultural engineering applications. It covers basic geometry, orthographic projection, and CAD software basics, culminating in the creation and interpretation of simple engineering drawings.