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Experimentally Building a Qualitative Understanding of Newton's Second Law

机译:实验性地建立对牛顿第二定律的定性理解

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Newton's second law is one of the cornerstones of the introductory physics curriculum, but it can still trouble a large number of students well after its introduction, hobbling their ability to apply the concept to problem solving and to related concepts, such as momentum, circular motion, and orbits. While there are several possibilities for lab activities addressing the functional relationship among net force, mass, and acceleration, the qualitative understanding of the connection between forces and acceleration can still be lacking,2 leading to poor performance in problem solving and in assessments such as the Force Concept Inventory3 and Force and Motion Conceptual Evaluation.4 There is a need for strong conceptual understanding of the relationships between net force and acceleration and between acceleration and velocity in order to effectively address common force-motion misconceptions;5 there is a large literature concerning student understanding of force and motion.6
机译:牛顿第二定律是物理学入门课程的基石之一,但引入第二定律后仍然会给很多学生带来麻烦,使他们无法将这一概念应用于解决问题的能力以及动量,圆周运动等相关概念。和轨道。尽管实验室活动有多种可能性来解决净力,质量和加速度之间的功能关系,但仍然缺乏对力和加速度之间关系的定性理解2,这导致在解决问题和评估(例如评估)方面表现不佳。力概念清单3和力与运动概念评估。4为了有效解决常见的力-运动误解,需要对净力与加速度之间的关系以及加速度与速度之间的关系有深刻的概念理解; 5学生对力和运动的理解。6

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