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Chemistry
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Define the law of multiple proportions. Explain it with two examples. How does this law point to the existence of atoms?

[1] Some Basic Concepts of Chemistry
Chapter: [1] Some Basic Concepts of Chemistry
Concept: undefined >> undefined

A box contains some identical red coloured balls, labelled as A, each weighing 2 grams. Another box contains identical blue coloured balls, labelled as B, each weighing 5 grams. Consider the combinations AB, AB2, A2B and A2B3 and show that law of multiple proportions is applicable.

[1] Some Basic Concepts of Chemistry
Chapter: [1] Some Basic Concepts of Chemistry
Concept: undefined >> undefined

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Which of the following options represents the correct bond order?

[4] Chemical Bonding and Molecular Structure
Chapter: [4] Chemical Bonding and Molecular Structure
Concept: undefined >> undefined

Which of the following have identical bond order?

(i) \[\ce{CN-}\]

(ii) \[\ce{NO+}\]

(iii) \[\ce{O^{-}2}\]

(iv) \[\ce{O^{2-}2}\]

[4] Chemical Bonding and Molecular Structure
Chapter: [4] Chemical Bonding and Molecular Structure
Concept: undefined >> undefined

Species having same bond order are:

(i) \[\ce{N2}\]

(ii) \[\ce{N^{-}2}\]

(iii) \[\ce{F^{+}2}\]

(iv) \[\ce{O^{-}2}\]

[4] Chemical Bonding and Molecular Structure
Chapter: [4] Chemical Bonding and Molecular Structure
Concept: undefined >> undefined

Using molecular orbital theory, compare the bond energy and magnetic character of \[\ce{O^{+}2}\] and \[\ce{O^{-}2}\] species.

[4] Chemical Bonding and Molecular Structure
Chapter: [4] Chemical Bonding and Molecular Structure
Concept: undefined >> undefined

What is the effect of the following processes on the bond order in \[\ce{N2}\] and \[\ce{O2}\]?

(i) \[\ce{N2 -> N^{+}2 + e-}\]

(ii) \[\ce{O2 -> O^{+}2 + e-}\]

[4] Chemical Bonding and Molecular Structure
Chapter: [4] Chemical Bonding and Molecular Structure
Concept: undefined >> undefined

Match the species in Column I with the bond order in Column II.

Column I Column II
(i) \[\ce{NO}\] (a) 1.5
(ii) \[\ce{CO}\] (b) 2.0
(iii) \[\ce{O^{-}2}\] (c) 2.5
(iv) \[\ce{O2}\] (d) 3.0
[4] Chemical Bonding and Molecular Structure
Chapter: [4] Chemical Bonding and Molecular Structure
Concept: undefined >> undefined

Which of the following pair is expected to have the same bond order?

[4] Chemical Bonding and Molecular Structure
Chapter: [4] Chemical Bonding and Molecular Structure
Concept: undefined >> undefined

As the temperature increases, average kinetic energy of molecules increases. What would be the effect of increase of temperature on pressure provided the volume is constant?

[5] States of Matter:- Gases and Liquids
Chapter: [5] States of Matter:- Gases and Liquids
Concept: undefined >> undefined

Match the graphs between the following variables with their names:

  Graphs   Names
(i) Pressure vs temperature graph at constant molar volume. (a) Isotherms
(ii) Pressure vs volume graph at constant temperature. (b) Constant temperature curve
(iii) Volume vs temperature graph at constant pressure. (c)  Isochores 
    (d) Isobars
[5] States of Matter:- Gases and Liquids
Chapter: [5] States of Matter:- Gases and Liquids
Concept: undefined >> undefined

Assertion (A): The temperature at which vapour pressure of a liquid is equal to the external pressure is called boiling temperature.

Reason (R): At high altitude atmospheric pressure is high.

[5] States of Matter:- Gases and Liquids
Chapter: [5] States of Matter:- Gases and Liquids
Concept: undefined >> undefined

How can production of hydrogen from water gas be increased by using water gas shift reaction?

[9] Hydrogen
Chapter: [9] Hydrogen
Concept: undefined >> undefined

In which of the following, functional group isomerism is not possible?

[9] Hydrocarbons
Chapter: [9] Hydrocarbons
Concept: undefined >> undefined

Which of the following pairs are position isomers?

I. \[\begin{array}{cc}
\phantom{.......................}\ce{O}\\
\phantom{.......................}||\\
\ce{CH3 - CH2 - CH2 - CH2 - C - H}
\end{array}\]
II. \[\begin{array}{cc}
\phantom{.................}\ce{O}\\
\phantom{.................}||\\
\ce{CH3 - CH2 - CH2 - C - H}
\end{array}\]
III. \[\begin{array}{cc}
\ce{CH3 - CH2 - C - CH2 - CH3}\\
\phantom{}||\\
\phantom{}\ce{O}
\end{array}\]
IV. \[\begin{array}{cc}
\ce{CH3 - CH - CH2 - C - H}\\
\phantom{...}|\phantom{............}||\phantom{}\\
\phantom{...}\ce{CH3}\phantom{.........}\ce{O}\phantom{}
\end{array}\]

(i) I and II

(ii) II and III

(iii) II and IV

(iv) III and IV

[9] Hydrocarbons
Chapter: [9] Hydrocarbons
Concept: undefined >> undefined

Electrophiles are electron seeking species. Which of the following groups contain only electrophiles?

(i) \[\ce{BF3, NH3, H2O}\]

(ii) \[\ce{AlCl3, SO3, NO^{+}2}\] 

(iii) \[\ce{NO^{+}2, CH^{+}3, CH3 - \overset{+}{C} = O}\]

(iv) \[\ce{C2H^{-}5, \overset{\bullet}{C2}H5, C2H^{+}5}\]

[8] Organic Chemistry - Some Basic Principles and Techniques
Chapter: [8] Organic Chemistry - Some Basic Principles and Techniques
Concept: undefined >> undefined

Which of the following pairs are not functional group isomers?

I. \[\begin{array}{cc}
\phantom{.......................}\ce{O}\\
\phantom{.......................}||\\
\ce{CH3 - CH2 - CH2 - CH2 - C - H}
\end{array}\]
II. \[\begin{array}{cc}
\phantom{.................}\ce{O}\\
\phantom{.................}||\\
\ce{CH3 - CH2 - CH2 - C - H}
\end{array}\]
III. \[\begin{array}{cc}
\ce{CH3 - CH2 - C - CH2 - CH3}\\
\phantom{}||\\
\phantom{}\ce{O}
\end{array}\]
IV. \[\begin{array}{cc}
\ce{CH3 - CH - CH2 - C - H}\\
\phantom{...}|\phantom{............}||\phantom{}\\
\phantom{...}\ce{CH3}\phantom{.........}\ce{O}\phantom{}
\end{array}\]

(i) II and III

(ii) II and IV

(iii) I and IV

(iv) I and II

[9] Hydrocarbons
Chapter: [9] Hydrocarbons
Concept: undefined >> undefined

Nucleophile is a species that should have:

(i) A pair of electrons to donate

(ii) Positive charge

(iii) Negative charge

(iv) Electron-deficient species

[8] Organic Chemistry - Some Basic Principles and Techniques
Chapter: [8] Organic Chemistry - Some Basic Principles and Techniques
Concept: undefined >> undefined

Consider structures I to VII and answer the question:

I. CH3 – CH2 – CH2 – CH2 – OH
II. \[\begin{array}{cc}
\ce{CH3 - CH2 - CH - CH3}\\
\phantom{.....}|\\
\phantom{.......}\ce{OH}
\end{array}\]
III. \[\begin{array}{cc}
\phantom{...}\ce{CH3}\\
\phantom{}|\\
\ce{CH3 - C - CH3}\\
\phantom{}|\\
\phantom{..}\ce{OH}
\end{array}\]
IV. \[\begin{array}{cc}
\ce{CH3 - CH - CH2 - OH}\\
|\phantom{........}\\
\ce{CH3}\phantom{......}
\end{array}\]
V. CH3 – CH2 – O – CH2 – CH3
VI. CH3 – O – CH2 – CH2 – CH3
VII. \[\begin{array}{cc}
\ce{CH3 - O - CH - CH3}\\
\phantom{...}|\\
\phantom{......}\ce{CH3}
\end{array}\]

Identify the pairs of compounds which are functional group isomers.

[9] Hydrocarbons
Chapter: [9] Hydrocarbons
Concept: undefined >> undefined

Consider structures I to VII and answer the question:

I. CH3 – CH2 – CH2 – CH2 – OH
II. \[\begin{array}{cc}
\ce{CH3 - CH2 - CH - CH3}\\
\phantom{.....}|\\
\phantom{.......}\ce{OH}
\end{array}\]
III. \[\begin{array}{cc}
\phantom{...}\ce{CH3}\\
\phantom{}|\\
\ce{CH3 - C - CH3}\\
\phantom{}|\\
\phantom{..}\ce{OH}
\end{array}\]
IV. \[\begin{array}{cc}
\ce{CH3 - CH - CH2 - OH}\\
|\phantom{........}\\
\ce{CH3}\phantom{......}
\end{array}\]
V. CH3 – CH2 – O – CH2 – CH3
VI. CH3 – O – CH2 – CH2 – CH3
VII. \[\begin{array}{cc}
\ce{CH3 - O - CH - CH3}\\
\phantom{...}|\\
\phantom{......}\ce{CH3}
\end{array}\]

Identify the pairs of compounds that represents position isomerism.

[9] Hydrocarbons
Chapter: [9] Hydrocarbons
Concept: undefined >> undefined
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