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HSC Science (General) 12th Standard Board Exam - Maharashtra State Board Question Bank Solutions for Chemistry

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Chemistry
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Define the Standard enthalpy of combustion.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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State and explain Hess’s law of constant heat summation.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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The enthalpy change of the following reaction:

\[\ce{CH_{4(g)} + Cl_{2(g)} -> CH3Cl_{(g)} + HCl_{(g)}ΔH^0 = –104 kJ}\]

Calculate C – Cl bond enthalpy. The bond enthalpies are:

Bond C − H Cl − Cl H − Cl
∆H°/kJ mol−1 414 243 431
[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Calculate the standard enthalpy of combustion of CH4(g) if ΔfH°(CH4) = – 74.8 kJ mol–1, ΔfH°(CO2) = – 393.5 kJ mol–1 and ΔfH°(H2O) = – 285.8 kJ mol–1.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Define standard enthalpy of formation.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Write the name of biodegradable polymer formed by two amino acids namely glycine and ε-amino caproic acid.

[15] Polymers
Chapter: [15] Polymers
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Write the name of raw material used for preparation of nylon 6, 6 polymer.

[15] Polymers
Chapter: [15] Polymers
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Calculate the standard enthalpy of formation of liquid methanol from the following data:

  1. \[\ce{CH3OH_{(l)} + \frac{3}{2} O_{2(g)} -> CO_{2(g)} + 2H2O_{(l)}}\]     ∆H° = – 726 kJ mol–1
  2. \[\ce{C_{(Graphite)} + O_{2(g)} -> CO_{2(g)}}\]          ∆cH° = – 393 kJ mol–1
  3. \[\ce{H_{2(g)} + \frac{1}{2} O_{2(g)} -> H2O_{(l)}}\]          ∆fH° = – 286 kJ mol–1 
[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Define the Bond enthalpy.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Calculate the standard enthalpy of the reaction.

\[\ce{2Fe_{(s)} + \frac{3}{2} O_{2(g)} -> Fe2O_{3(s)}}\]

Given:

1. \[\ce{2Al_{(s)} + Fe2O_{3(s)} -> 2Fe_{(s)} + Al_2O_{3(s)}}\], rH° = –847.6 kJ
2. \[\ce{2Al_{(s)} + \frac{3}{2} O_{2(g)} -> Al2O_{3(s)}}\], rH° = –1670 kJ
[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Define the Enthalpy of ionisation.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Write an application of Hess’s law.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Does the following reaction represent a thermochemical equation?

\[\ce{CH_{4(g)} + 2O_{2(g)} -> CO_{2(g)} + 2H2O_{(g)}}\], ∆fH° = –900 kJ mol–1

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Classify the following into intensive and extensive properties.

Pressure, volume, mass, temperature.

[4] Chemical Thermodynamics
Chapter: [4] Chemical Thermodynamics
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Write any three advantages of nanoparticles and nanotechnology.

[16] Green Chemistry and Nanochemistry
Chapter: [16] Green Chemistry and Nanochemistry
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Explain any three characteristic features of nanoparticles.

[16] Green Chemistry and Nanochemistry
Chapter: [16] Green Chemistry and Nanochemistry
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State disadvantages of nanoparticles and nanotechnology.

[16] Green Chemistry and Nanochemistry
Chapter: [16] Green Chemistry and Nanochemistry
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Write the name of biodegradable polyamide copolymer.

[15] Polymers
Chapter: [15] Polymers
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Derive an expression to calculate molar mass of non-volatile solute by osmotic pressure measurement.

[2] Solutions
Chapter: [2] Solutions
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Identify A and B from the following reaction:

\[\begin{array}{cc}
\ce{CH3}\phantom{.................}\\
|\phantom{....................}\\
\phantom{}\ce{2CH3 - C = O ->[Ba(OH)2] A ->[Δ] B + H2O}
\end{array}\]

[12] Aldehydes, Ketones and Carboxylic Acids
Chapter: [12] Aldehydes, Ketones and Carboxylic Acids
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