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Demonstrating the conservation of angular momentum using spherical magnets

机译:用球形磁铁展示角动力的节约

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摘要

An experimental setup for demonstrating the conservation of angular momentum of rotating spherical magnets is described. Two spherical Nd-Fe-B magnets are placed on a double inclined plane and projected towards each other with pre-selected impact parameters ranging from zero to a few tens of millimeters. After impact, the two magnets either revolve vigorously around the common center of mass or stop immediately, depending on the value of the impact parameter. Using a pick-up coil connected to an oscilloscope, the angular frequency for the rotating magnets was measured, and an estimate for the angular momentum was obtained. A high-speed video camera captured the impact and was used for measuring linear and angular velocities of the magnets. A very good agreement between the initial angular momentum before the impact and the final angular momentum of the revolving dumbbell is observed. The two rotating magnets, and the rotating electromagnetic field emanating from them, can also be viewed as a toy model for the newly discovered gravitational waves, where two black holes collide after revolving around each other. (Enhanced online) (C) 2018 American Association of Physics Teachers.
机译:描述了用于说明旋转球形磁体的角动能保护的实验装置。两个球形ND-Fe-B磁体放置在双倾斜平面上,并朝向彼此突出,预选的冲击参数范围为0到几十毫米。撞击后,根据影响参数的值,两个磁铁要么立即围绕公共质量围绕或立即停止。使用连接到示波器的拾取线圈,测量旋转磁体的角频率,获得了角动量的估计。高速摄像机捕获了冲击,用于测量磁体的线性和角速度。观察到初始角动量与旋转哑铃的最终角动量之间的初始角动量之间非常好的一致性。两个旋转磁体和从它们发出的旋转电磁场也可以被视为新发现的引力波的玩具模型,其中两个黑洞彼此旋转后碰撞。 (增强在线)(c)2018年美国物理教师协会。

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