Alternatives for MIDI 101: MIDI Demystified

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Organic chemistry: Sn1 and Sn2: leaving group

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Using pKa table to determine leaving group ability for Sn1 and Sn2 reactions. Organic chemistry Sal and Jay cover topics covered in college…

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Organic chemistry: Curly arrow conventions in organic chemistry

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Conventions for drawing curved arrows that represent the movements of electrons. Organic chemistry Sal and Jay cover topics covered in coll…

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Organic chemistry: Identifying nucleophilic and electrophilic centers

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The definition of nucleophiles and electrophiles. Identifying nucleophilic and electrophilic centers in a molecule. Organic chemistry Sal a…

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Organic chemistry: Alkyl halide nomenclature and classification

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Common and IUPAC nomenclature of alkyl halides. Classifying primary, secondary, and tertiary alkyl halides. Organic chemistry Sal and Jay c…

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Organic chemistry: Carbocation stability and rearrangement introduction

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Representing carbocations using Lewis structures and model showing the empty p orbital. Hyperconjugation and rearrangements to form more st…

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Organic chemistry: Intro to organic mechanisms

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Identifying electrophiles and nucleophiles. Showing movement of electrons using curved arrows. Organic chemistry Sal and Jay cover topics c…

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Organic chemistry: Sn1 mechanism: carbocation rearrangement

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Examples of Sn1 reactions involving carbocation rearrangements. Organic chemistry Sal and Jay cover topics covered in college organic chemi…

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Organic chemistry: Sn1 vs Sn2: Summary

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Summary of Sn1 and Sn2 reactions and the types of molecules and solvents that favor each. Organic chemistry Sal and Jay cover topics covere…

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Organic chemistry: Carbocation rearrangement practice

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Examples of using hydride and methyl shifts to form more stable carbocation. Organic chemistry Sal and Jay cover topics covered in college …

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Organic chemistry: Sn1 vs Sn2: Solvent effects

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Which types of solvents favor Sn1 and Sn2 reactions. Organic chemistry Sal and Jay cover topics covered in college organic chemistry course…

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Organic chemistry: Sn2 mechanism: kinetics and substrate

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The mechanism, rate law, and stereochemistry of Sn2 reactions. How the sterics of the alkyl halide affect the reaction rate. Organic chemis…

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Organic chemistry: Sn1 mechanism: stereochemistry

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Stereochemistry of an Sn1 reaction and how it relates to the Sn1 mechanism. Organic chemistry Sal and Jay cover topics covered in college o…

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Organic chemistry: Sn1 mechanism: kinetics and substrate

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How an Sn1 reaction takes place. Organic chemistry Sal and Jay cover topics covered in college organic chemistry course. Basic understandin…

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Organic chemistry: Sn1 carbocation rearrangement (advanced)

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Example reaction showing Sn1 mechanism where substrate with six membered ring forms five membered ring product via alkyl shift. Organic che…

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Organic chemistry: Sn2 mechanism: stereospecificity

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How nucleophilic attack in Sn2 reaction results in inversion of configuration at carbon with leaving group. Organic chemistry Sal and Jay c…