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The density (in g m L^(-1)) of a 3.60 ...

The density (in `g m L^(-1)`) of a 3.60 M sulphuric acid solution that is 29% `H_(2)SO_(4)` by mass will be:

A

`1.64`

B

`1.88`

C

`1.22`

D

`1.45`

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The correct Answer is:
C
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Calculate the density ("in gm L"^(-1)) of a 3.60 M sulphuric acid solution that is 29 % H_(2)SO_(4) by mass ("molar mass = 98 g mol"^(-1))

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 22% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 25% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 20% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 40% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 50% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 33% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 55% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 45% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

The density (in g ml^(−1) ) of a 3.60M sulphuric acid solution having 30% H_2SO_4 [molar mass =98g mol^(−1) ] by mass, will be:

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