Year 9 CIE Engineering: Key Terminology Memorisation Guide | Year 9 CIE 工程:关键术语速记指南

📚 Year 9 CIE Engineering: Key Terminology Memorisation Guide | Year 9 CIE 工程:关键术语速记指南

Engineering is a vast field that relies heavily on precise terminology. For Year 9 students following the CIE curriculum, mastering key terms is the first step towards understanding concepts in mechanics, materials, electronics, and design. This memorisation guide presents essential vocabulary in bite-sized, bilingual explanations to help you recall definitions quickly and confidently for assessments and practical work.

工程学是一门高度依赖精确术语的学科。对于学习 CIE 课程的 Year 9 学生来说,掌握关键术语是理解力学、材料、电子和设计概念的第一步。本速记指南以中英双语的简洁解释呈现核心词汇,帮助你快速、自信地记忆定义,应对考试和实践任务。

1. Forces and Motion | 力与运动

Understanding forces is fundamental in engineering. The following terms describe how objects interact and move.

理解力是工程学的基础。以下术语描述物体如何相互作用和运动。

Force (F): A push or pull acting on an object, measured in newtons (N). It can cause acceleration.

力 (Force): 作用在物体上的推或拉,单位为牛顿 (N),可产生加速度。

Newton (N): The SI unit of force. 1 N is the force needed to accelerate 1 kg at 1 m/s².

牛顿 (Newton): 力的国际单位。1 N 是使 1 kg 物体产生 1 m/s² 加速度所需的力。

F = m × a

This equation shows that force equals mass multiplied by acceleration.

该公式表明力等于质量乘以加速度。

Friction: A resistive force that opposes the sliding motion between two surfaces.

摩擦力 (Friction): 阻碍两个表面相对滑动的阻力。

Mass (m): The amount of matter in an object, measured in kilograms (kg). It is constant regardless of location.

质量 (Mass): 物体所含物质的量,单位千克 (kg),不随位置改变。

Weight (W): The force of gravity on an object, measured in newtons. Weight = mass × gravitational field strength (g).

重量 (Weight): 重力作用在物体上的力,单位为牛顿。重量 = 质量 × 重力场强度 (g)。

W = m × g

Weight is directly proportional to mass; on Earth, g ≈ 9.8 N/kg.

重量与质量成正比;在地球上,g 约为 9.8 N/kg。


2. Material Properties | 材料属性

Engineers select materials based on their properties. These terms define how materials behave under different conditions.

工程师根据材料属性选材。这些术语定义了材料在不同条件下的表现。

Tensile strength: The maximum stress a material can withstand while being stretched before breaking.

抗拉强度 (Tensile strength): 材料在拉伸状态下断裂前所能承受的最大应力。

Compressive strength: The capacity of a material to withstand loads that tend to reduce its size.

抗压强度 (Compressive strength): 材料抵抗使其尺寸缩小的载荷的能力。

Hardness: Resistance of a material to indentation or scratching.

硬度 (Hardness): 材料抵抗压痕或划痕的能力。

Toughness: The ability of a material to absorb energy and deform plastically without fracturing.

韧性 (Toughness): 材料吸收能量并发生塑性变形而不断裂的能力。

Ductility: The ability to be drawn into a wire, indicating high plastic deformation before fracture.

延展性 (Ductility): 可拉成丝的能力,表明断裂前有较大的塑性变形。

Elasticity: The ability of a material to return to its original shape after the removal of a load.

弹性 (Elasticity): 材料在载荷移除后恢复原状的能力。


3. Structures and

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