Dimensional Reasoning

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Abstract

1. How dimensions, units, and magnitudes characterize physical variables/measurement. 2. That a limited number of primitive dimensions can be arranged to characterize all physical phenomena 3. Dimensions are intrinsic to the variables themselves; units are not 4. Measurement and quantification of variables depend on units which are established by convention, e.g., SI 5. Rudiments of the SI and English measurement systems 6. Why we still use more than one system of units 7. Dimensions, units, and quantities may be manipulated algebraically 8. All terms in an equation must have identical primitive dimensions to be consistent 9. Many physical phenomena can be expressed in terms of its contributing parameters as a single term 10. Dimensional reasoning can be used to infer the relationship between those parameters 11. What are “dimensionless” variables 12. Why physical phenomena are sometimes expressed in terms of dimensionless variables 13. Descriptions of and differences between geometric, kinematic, and dynamic similarity 14. Why old movies look “strange” when movie-makers use models to simulate disasters 15. When scale models can be used to predict full-size phenomena. When they can’t.
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维推理
1. 尺寸、单位和大小如何表征物理变量/测量。2. 有限数量的原始维度可以用来描述所有的物理现象。维度是变量本身固有的;单位不是4。变量的测量和量化依赖于按惯例建立的单位,例如SI 5。国际单位制和英国测量系统基础6。为什么我们仍然使用不止一种单位制?量纲、单位和数量可以用代数方法处理。方程中的所有项必须具有相同的基本维数才能保持一致。许多物理现象可以用它的贡献参数作为一个单独的项来表示。量纲推理可以用来推断这些参数之间的关系。什么是“无量纲”变量?为什么物理现象有时用无量纲变量来表示几何、运动学和动态相似性的描述和区别为什么当电影制作人用模型来模拟灾难时,老电影看起来很“奇怪”?当比例模型可以用来预测全尺寸现象时。当他们不能。
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