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-[**Video**: Degrees of freedom](https://youtu.be/9yK22-LSM-4)[__Notes Here__](https://drive.google.com/file/d/1CEr_yhwPD03eI2rFDm-R7jbhKemqQBmG/view?usp=sharing)
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-[__Extra Reading on Drag forces__](https://drive.google.com/file/d/1tvh20pslz-ivsdvbFDkqF6AGq_RhdeOh/view?usp=sharing)
a. [Python solution](https://drive.google.com/file/d/1DhufUmwnC2OtFE_SyAB4K-uUOVF1IsYk/view?usp=sharing)
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b. [Matlab solution](https://drive.google.com/file/d/1GOZuNAWuiBnnUX_hfiN_l-MQ_br-gK6f/view?usp=sharing)
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c. [Google Sheets Euler integration](https://docs.google.com/spreadsheets/d/1D20Ti9VaPU7FFyrwDtFSFBK8uRoQBtpANqnALJ76y0U/edit?usp=sharing)
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-[**Video**: Planar Kinetics of Rigid Bodies](https://forms.gle/jp7CyvFLCA5aNfPQ8)[__Notes here__](https://drive.google.com/file/d/1FmJuH_eCVTddrL-rmIThEssO3epMKdoA/view?usp=sharing)
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-[**Video**: Rigid body impacts](https://forms.gle/aLSg24BGcPQWh2yi6)[__Notes here__](https://drive.google.com/file/d/1nCQ7GvYNloXdjRs34JcepbIQEMBOAHUv/view?usp=sharing)
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-[**Video**: Top spinning experiment part 01](https://forms.gle/3gwCaeTR5WvDdugb7)[__Notes here__](https://drive.google.com/file/d/184H8r2qmIRo4Ni49uCJPFG-tuVqesfLB/view?usp=sharing)
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-[**Video**: Top spinning experiment part 02](https://forms.gle/GiiuQzZFtcogwJ5v5)[__Notes here__](https://drive.google.com/file/d/13UZLzk4lByypk9q32UmbdCOkz_a-Ieg_/view?usp=sharing)
<!-- - [**Video**: Planar Kinetics of Rigid Bodies](https://forms.gle/jp7CyvFLCA5aNfPQ8) [__Notes here__](https://drive.google.com/file/d/1FmJuH_eCVTddrL-rmIThEssO3epMKdoA/view?usp=sharing)-->
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<!-- - [**Video**: Rigid body impacts](https://forms.gle/aLSg24BGcPQWh2yi6) [__Notes here__](https://drive.google.com/file/d/1nCQ7GvYNloXdjRs34JcepbIQEMBOAHUv/view?usp=sharing)-->
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<!-- - [**Video**: Top spinning experiment part 01](https://forms.gle/3gwCaeTR5WvDdugb7) [__Notes here__](https://drive.google.com/file/d/184H8r2qmIRo4Ni49uCJPFG-tuVqesfLB/view?usp=sharing)-->
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<!-- - [**Video**: Top spinning experiment part 02](https://forms.gle/GiiuQzZFtcogwJ5v5) [__Notes here__](https://drive.google.com/file/d/13UZLzk4lByypk9q32UmbdCOkz_a-Ieg_/view?usp=sharing)-->
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## Textbook reference
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*[Kasdin and Paley's _Engineering Dynamics_ ch. 4](https://www.jstor.org/stable/j.ctvcm4ggj.7)
@@ -35,8 +35,4 @@ Focus on:
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6.__Equations 5.6 and 5.16 and Table 5.1__ Work-energy equation and potential energy
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__Choose three examples and discuss how kinematics (specifically the transport
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equation) were applied to describe the geometry of motion.__ Take a look at
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what the rest of the class writes and add some discussion points on a
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