#Pcc Ochem

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#Pcc Ochem Reel by @ochemdecoded - Practice practice practice that synthesis

#organicchemistry #ochem #organicchemistrytutor #premed #stem
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@ochemdecoded
Practice practice practice that synthesis #organicchemistry #ochem #organicchemistrytutor #premed #stem
#Pcc Ochem Reel by @learningbrews - STOP listing random reactions - acids have standard chemical properties examiners expect 🔥

Acids react with metals to form salt and hydrogen, and wi
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@learningbrews
STOP listing random reactions — acids have standard chemical properties examiners expect 🔥 Acids react with metals to form salt and hydrogen, and with carbonates to form salt, carbon dioxide, and water — choose any two and score cleanly. Attempt this question and secure your marks 💪 👉 Follow for more sure come out chemistry questions 📘 👉 Or join our classes and let’s work towards mastery together 🥰 Learning Brews - Kovan Tuition Centre 1028A Upper Serangoon Rd, Kovan, Singapore 534766 WhatsApp Us in Bio 👇 #LearningBrews #52ChemistrySeries #Acids #science #chemistry
#Pcc Ochem Reel by @joyoyebisitutoring - Zn goes from 0 to +2.
Loss of electrons = oxidation.
Remember OIL RIG, and you won't lose easy exam marks.
Did you get it right?
#APChem #ChemistryRee
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@joyoyebisitutoring
Zn goes from 0 to +2. Loss of electrons = oxidation. Remember OIL RIG, and you won’t lose easy exam marks. Did you get it right? #APChem #ChemistryReel #STEMStudents #exampreparation
#Pcc Ochem Reel by @ochemdecoded - Some nice quick synthesis practice 

#organicchemistry #ochem #premed #organicchemistrytutor #stem
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@ochemdecoded
Some nice quick synthesis practice #organicchemistry #ochem #premed #organicchemistrytutor #stem
#Pcc Ochem Reel by @the_highachiever_mindset - 🔬⚡️ MASTER YOUR ORGANIC CHEMISTRY GAME⚡️🔬
🚀 Dive into *Problem 22* with our expert breakdown of **acidic proton** analysis in #NMR spectroscopy & #
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@the_highachiever_mindset
🔬⚡️ MASTER YOUR ORGANIC CHEMISTRY GAME⚡️🔬 🚀 Dive into *Problem 22* with our expert breakdown of **acidic proton** analysis in #NMR spectroscopy & #OrganicChemistry! 📚✨ Learn which highlighted position (A, B, C or D) bears the MOST acidic proton in this ester compound – the key to acing your #IITJEE / #NEET prep! 💥 🎥 56‑sec MASTERCLASS** by our #ChemGuru – high‑impact visual storytelling + kinetic typography for maximum information retention & audience engagement. 🔥 💡 SEO tags: OrganicChemistryTips AcidicProton ChemistryEducation ScienceReels EduViral StudyHack LearnWithMe ChemSolutions ExamPrep KnowledgeBoost MicroLearning ContentMarketing MediaAgency DigitalStrategy AlgorithmHack 🔗 Swipe 👉 for step‑by‑step solution & engage with our poll: **Which proton is most acidic?👇 Comment A, B, C or D! 👨‍🔬👩‍🔬
#Pcc Ochem Reel by @iheartochem - Hi everyone! Here's an explanation for the 02/05 QOTD since the majority answer was incorrect. Hope this helps cover any misunderstandings, please lea
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@iheartochem
Hi everyone! Here’s an explanation for the 02/05 QOTD since the majority answer was incorrect. Hope this helps cover any misunderstandings, please leave comments or dms if anything doesn’t make sense or you’d like some elaboration! Extra: A is incorrect because it flips the signage on bonds breaking and bonds forming arrows. B is incorrect because it uses the incorrect O-H pKa (16) instead of carboxylic acid pKa (5) and the signage (+/-) is wrong as well C is incorrect because of the bonds forming pKa, which uses a standard C-H bond pKa of -50 rather than the alkene -45. Additionally, alkyne pKa is 25. D is the correct answer because it uses the proper -COOH 5 pKa and alkene 45 pKa and correct assignment of + and - #organicchemistry #orgo #ochem
#Pcc Ochem Reel by @the_highachiever_mindset - Why this SN1 reaction is "Dead on Arrival" 🪤
Welcome back to Day 2 of our 50-part Orgo 2 series! Today we are uncovering why some molecules simply re
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@the_highachiever_mindset
Why this SN1 reaction is "Dead on Arrival" 🪤 Welcome back to Day 2 of our 50-part Orgo 2 series! Today we are uncovering why some molecules simply refuse to undergo an SN1 reaction. The Secret to SN1 Success: The key is all in the carbocation stability. In this problem set, we compare four different structures to find the outlier: Structure A: A benzylic and tertiary carbocation—ultra-stable. Structure B & C: These gain massive stability through aromaticity. The Trap (Structure D): When the Bromine leaves here, it creates a carbocation with only 4n π electrons. This makes it anti-aromatic and highly unstable, meaning the reaction won't happen. Mastering the link between aromaticity and reactivity is how you ace your Orgo 2 exams. 📌 SAVE this reel for your next study session—you don't want to fall for the anti-aromatic trap! Which mechanism is giving you the most trouble lately? Let me know in the comments! 👇 . . . #OrganicChemistry #Orgo2 #ChemistryProfessor #PreMedLife #STEM ChemistryTips StudyHacks Carbocation ChemistryProblems ChemistryMechanisms
#Pcc Ochem Reel by @ssaxmike (verified account) - This is a saxmike production I hope you guys enjoy. Need AP bio or chem help? Check out my 2000+ flashcards linked in bio and level up your learning w
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@ssaxmike
This is a saxmike production I hope you guys enjoy. Need AP bio or chem help? Check out my 2000+ flashcards linked in bio and level up your learning with us at LabNova today. #chemistrymemes #chemistry
#Pcc Ochem Reel by @ochemdecoded - If you don't like spectroscopy and synthesis then you're not gonna be happy in OChem 2

#organicchemistry #ochem #organicchemistrytutor #premed #stem
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@ochemdecoded
If you don’t like spectroscopy and synthesis then you’re not gonna be happy in OChem 2 #organicchemistry #ochem #organicchemistrytutor #premed #stem
#Pcc Ochem Reel by @the_highachiever_mindset - Organic chemistry is really out here testing my will to live today 😭 Why just add a carbon when you can add a whole mental breakdown instead? Send he
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@the_highachiever_mindset
Organic chemistry is really out here testing my will to live today 😭 Why just add a carbon when you can add a whole mental breakdown instead? Send help (or a tutor). 💀📉 #ochem #organicchemistry #chemistrymemes #premed #premedstudent
#Pcc Ochem Reel by @biochemedits - join the STEM discord to network with other science majors and exchange study strategies & advice for success, link in bio! what's your favorite equat
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@biochemedits
join the STEM discord to network with other science majors and exchange study strategies & advice for success, link in bio! what's your favorite equation/formula from first or second semester general chemistry? disclaimer: i know stoichiometry isn't technically an "equation" but i threw it in at the very end for fun, i'm also aware that the nernst equation is derived from gibbs free energy but wtv. passage below from openstax Organic Chemistry "In acidic solution, at low pH, a carboxylic acid is completely undissociated and exists entirely as RCO2H. In basic solution, at high pH, a carboxylic acid is completely dissociated and exists entirely as RCO2–. Inside living cells, however, the pH is neither acidic nor basic but is instead buffered to a nearly neutral pH of 7.35–7.45. In what form, then, do carboxylic acids exist inside cells? The question is an important one for understanding the acid catalysts so often found in biological reactions. If the pKa value of a given acid and the pH of the medium are known, the percentages of dissociated and undissociated forms can be calculated using the Henderson–Hasselbalch equation. This equation says that the logarithm of the concentration of dissociated acid [A–] divided by the concentration of undissociated acid [HA] is equal to the pH of the solution minus the pKa of the acid. Thus, if we know both the pH of the solution and the pKa of the acid, we can calculate the ratio of [A–] to [HA]. Furthermore, when pH = pKa, then HA and A– are present in equal amounts because log 1 = 0." #genchem #pvnrt #acidsandbases #stoichiometry #ochem
#Pcc Ochem Reel by @catalystchemistry (verified account) - Here's an electrophilic aromatic substitution synthesis problem you can try!
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#organicchemistry #chemistry #ochem #premed #study
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@catalystchemistry
Here’s an electrophilic aromatic substitution synthesis problem you can try! • • • • • #organicchemistry #chemistry #ochem #premed #study

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