CHEMCA
EXAM MASTER FORMULA SHEET
Some Basic Concepts of Chemistry (Mole Concept)
1. Laws of Chemical Combination
2. Atomic, Molecular Masses & V.D.
\(x_i\) = % abundance or molar ratio
Specific heat must be in \(\text{cal/g-}\!^\circ\text{C}\)
3. Fundamental Mole Relations (The Y-Map)
Avogadro's Number (\(N_A\)) = \(6.022 \times 10^{23}\) particles/mol.
Note for Modern STP: Standard pressure is now 1 bar. At 273.15 K and 1 bar, molar volume is 22.7 L. However, for most traditional JEE/NEET problems, 22.4 L (at 1 atm) is still widely used unless 1 bar is specifically mentioned.
4. Stoichiometry & Advanced Computations
The reactant with the minimum value of this ratio is the Limiting Reagent. It completely dictates the amount of product formed.
Mass of atoms of an element is conserved. Useful when chemical equation cannot be easily balanced.
5. Percentage Composition & Formulas
\(\text{Molecular Formula} = n \times (\text{Empirical Formula})\)
Where \(n = \frac{\text{Molecular Mass}}{\text{Empirical Formula Mass}}\) (n is an integer)6. Concentration Terms & Dilution
| Term | Formula | Unit |
|---|---|---|
| Molarity (M) | \( \frac{\text{Moles of Solute}}{\text{Volume of Solution (L)}} \) | mol/L (M) |
| Molality (m) | \( \frac{\text{Moles of Solute}}{\text{Mass of Solvent (kg)}} \) | mol/kg (m) |
| Mole Fraction (\(\chi_A\)) | \( \frac{n_A}{n_A + n_B} \) (\(\chi_A + \chi_B = 1\)) | Unitless |
| Parts Per Million (ppm) | \( \frac{\text{Mass of Solute}}{\text{Total Mass}} \times 10^6 \) | ppm |
d = density of solution (g/mL)
7. Advanced & Special Concepts
- \( \text{Volume Strength (V)} = 11.2 \times \text{Molarity} \)
- \( \text{Volume Strength (V)} = 5.6 \times \text{Normality} \)
- \( \% \text{ Strength (w/v)} = \frac{17}{56} \times V \)
*Based on STP (273K, 1 atm). If 1 bar is used, factor is 11.35.
Oleum is labeled as \((100 + x)\%\), where \(x\) is the mass of water required to fully react with free \(SO_3\) in 100g sample.
\( \text{Moles of } CaCO_3 \text{ eq.} = \text{Moles of } Ca^{2+}/Mg^{2+} \text{ salt} \times \frac{n\text{-factor of salt}}{2} \)
8. Equivalent Concept & Titration
- Acids: Basicity (No. of replaceable \(H^+\) ions). E.g., \(H_2SO_4 \rightarrow 2\), \(H_3PO_4 \rightarrow 3\), \(H_3PO_3 \rightarrow 2\).
- Bases: Acidity (No. of replaceable \(OH^-\) ions).
- Salts: Total magnitude of positive or negative charge on ions.
- Redox Agents: Number of electrons exchanged per molecule OR Change in oxidation state \(\times\) number of atoms.
In any reaction \(aA + bB \rightarrow cC + dD\), substances react in equal equivalents:
\[ \text{Equivalents of A} = \text{Equivalents of B} = \text{Equivalents of C} = \text{Equivalents of D} \] \[ N_1 V_1 = N_2 V_2 \]9. Eudiometry (Gas Analysis)
Crucial Point: At room temperature, water formed is considered liquid. Therefore, its volume contribution to the gaseous mixture is taken as zero. Contraction in volume (\(V_c\)) = \(V_{\text{reactants}} - V_{\text{products}}\).
| Gas to be absorbed | Absorbent Used |
|---|---|
| \(CO_2, SO_2, Cl_2\) (Acidic Gases) | Aqueous KOH or NaOH solution |
| \(O_2\) (Oxygen) | Alkaline Pyrogallol solution |
| \(O_3\) (Ozone) | Turpentine Oil |
| \(CO\) (Carbon Monoxide) | Ammoniacal Cuprous Chloride (\(Cu_2Cl_2\)) |
| \(H_2O\) vapour (Moisture) | Anhydrous \(CaCl_2\), Conc. \(H_2SO_4\), or \(P_2O_5\) |
| \(NH_3\) (Ammonia) | Water or Dilute acid / Nessler's Reagent |
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Sir ur explanation are too good that I didn't have to wrote notes to remember. Thank you so much.
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