🇮🇳 NEET / State Class 12 Board (e.g. ISC) · flashcards

NEET / State Class 12 Board (e.g. ISC) Chemistry Flashcards

51 question-and-answer cards covering Chemistry as it is examined in NEET / State Class 12 Board (e.g. ISC). 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.

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13Syllabus topics
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24 sample cards from the Chemistry deck

Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.

  1. Why do transition metals show variable oxidation states?

    Because the energies of (n−1)d and ns orbitals are very close, electrons from both can participate in bonding, giving multiple stable oxidation states.

  2. Why are most transition metal compounds coloured?

    Due to d-d electronic transitions: an electron absorbs visible light to jump between split d-orbitals, and the complementary colour is observed. Requires partially filled d-orbitals.

  3. What are lanthanoid contraction and its consequence?

    The steady decrease in atomic/ionic radii across the lanthanoids due to poor shielding by 4f electrons. Consequence: Zr and Hf have nearly identical sizes and similar properties.

  4. Why is Mn²⁺ more stable than Mn³⁺, while Fe³⁺ is more stable than Fe²⁺?

    Mn²⁺ has a half-filled stable 3d⁵ configuration; Fe³⁺ also has stable 3d⁵, so Fe³⁺ is favoured over Fe²⁺ (3d⁶).

  5. Why do Zn, Cd, and Hg not show typical transition metal properties?

    They have completely filled d¹⁰ configurations in their common (+2) states, so they lack partially filled d-orbitals — hence no variable valency, colour, or strong catalysis.

  6. Write the spin-only magnetic moment formula.

    μ = √[n(n+2)] BM, where n is the number of unpaired electrons. (e.g. n=5 gives μ ≈ 5.92 BM.)

  7. State Werner's definition of primary and secondary valency in coordination compounds.

    Primary valency = oxidation number (ionisable, satisfied by anions); secondary valency = coordination number (non-ionisable, satisfied by ligands, fixed and directional).

  8. What is a chelate ligand? Give an example.

    A polydentate (bidentate or higher) ligand that binds the central metal at two or more points forming a ring, e.g. ethylenediamine (en) or EDTA. Chelation increases complex stability.

  9. State the IUPAC name of [Co(NH₃)₆]Cl₃.

    Hexaamminecobalt(III) chloride.

  10. What does the crystal field splitting energy (Δ₀) determine in octahedral complexes?

    Whether a complex is high-spin or low-spin. If Δ₀ > pairing energy (strong field ligand), electrons pair → low spin; if Δ₀ < pairing energy (weak field), → high spin.

  11. Arrange these ligands by increasing field strength (spectrochemical series): I⁻, H₂O, CN⁻, NH₃.

    I⁻ < H₂O < NH₃ < CN⁻. CN⁻ is a strong-field ligand, I⁻ is weak-field.

  12. How many unpaired electrons does [Fe(CN)₆]³⁻ have and what is its geometry?

    Fe is +3 (d⁵); CN⁻ is strong field → low spin (t₂g⁵) → 1 unpaired electron. Octahedral, d²sp³ hybridisation.

  13. Which gives faster SN1 reactions: 3° or 1° haloalkanes, and why?

    3° (tertiary) react faster by SN1 because the intermediate carbocation is stabilised by hyperconjugation and inductive effects from the alkyl groups.

  14. Why are haloarenes less reactive than haloalkanes toward nucleophilic substitution?

    Resonance gives the C–X bond partial double-bond character (shorter, stronger), plus sp² carbon holds electrons tightly and the aryl ring repels nucleophiles.

  15. What is Markovnikov vs anti-Markovnikov addition of HBr to alkenes?

    Markovnikov: H adds to the carbon with more H's (ionic mechanism). Anti-Markovnikov (peroxide effect/Kharasch): with peroxides, HBr adds opposite via a free-radical mechanism.

  16. What is the Williamson ether synthesis?

    Reaction of a sodium alkoxide (R–O⁻Na⁺) with a primary alkyl halide (SN2) to give an ether: R–O⁻ + R'–X → R–O–R' + X⁻. Use primary halides to avoid elimination.

  17. Why are phenols more acidic than alcohols?

    The phenoxide ion formed after losing H⁺ is stabilised by resonance delocalisation into the aromatic ring, whereas an alkoxide ion is not resonance-stabilised.

  18. What does the Lucas test distinguish, and which alcohol reacts fastest?

    It distinguishes 1°, 2°, and 3° alcohols using conc. HCl + ZnCl₂ (turbidity). 3° reacts immediately, 2° in ~5 min, 1° only on heating.

  19. Why are aldehydes more reactive than ketones toward nucleophilic addition?

    Aldehydes have less steric hindrance and fewer electron-donating alkyl groups, so the carbonyl carbon is more electrophilic and more accessible.

  20. What is the aldol condensation reaction?

    Two molecules of an aldehyde/ketone with α-hydrogens combine under dilute base to form a β-hydroxy carbonyl (aldol), which on heating loses water to give an α,β-unsaturated carbonyl.

  21. Why are carboxylic acids more acidic than phenols and alcohols?

    The carboxylate ion is stabilised by resonance over two equivalent oxygen atoms, delocalising the negative charge more effectively than phenoxide or alkoxide.

  22. Why are aliphatic amines more basic than ammonia in aqueous solution (for 1°/2°)?

    Alkyl groups are electron-donating (+I effect), increasing electron density on nitrogen so it donates its lone pair more readily; solvation of the cation also stabilises the conjugate acid.

  23. What is the Hinsberg test used to distinguish?

    It distinguishes 1°, 2°, and 3° amines using benzenesulphonyl chloride: 1° gives a base-soluble product, 2° gives a base-insoluble product, 3° does not react.

  24. Name the bond linking amino acids in proteins and the bond linking monosaccharides in carbohydrates.

    Amino acids are linked by peptide (amide) bonds; monosaccharides are linked by glycosidic bonds.

What this deck covers

The Chemistry deck follows the NEET / State Class 12 Board (e.g. ISC) Chemistry syllabus — 4 chapters and 13 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 12.8 cards per chapter.

Answers are written to be recallable, not just readable — averaging about 145 characters, which is long enough to carry the reasoning and short enough to say out loud.

A deck like this earns its keep on the second and third pass. Read the syllabus first so you know the shape of the subject, then use the cards to find the specific facts that have not stuck.

Chemistry flashcards FAQ

How many Chemistry flashcards are in this NEET / State Class 12 Board (e.g. ISC) deck?

51 cards. This page previews 24 of them, sampled evenly across the deck so you can judge the difficulty before installing anything.

Are these NEET / State Class 12 Board (e.g. ISC) flashcards free?

Yes. The preview here is free to read with no signup, and the full 51-card deck is free inside the Examius app.

What do the Chemistry cards cover?

They follow the NEET / State Class 12 Board (e.g. ISC) Chemistry syllabus — 4 chapters and 13 topics — so the questions track what is actually examinable.

How should I use these flashcards?

Read the syllabus first so you know the shape of the subject, then drill the deck. Examius schedules each card with spaced repetition, so cards you keep missing come back sooner and ones you know drift further apart.