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Calculate the total pressure in a mixture of 8 g of dioxygen and 4 g of dihydrogen confined in a vessel of 1 dm3 at 27°C. R = 0.083 bar dm3 K–1 mol–1.
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2.9 g of a gas at 95 °C occupied the same volume as 0.184 g of dihydrogen at 17 °C, at the same pressure. What is the molar mass of the gas?
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Write IUPAC name of the product obtained by the ozonolysis of the following compound.
Pent-2-ene
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An alkene ‘A’ on ozonolysis gives a mixture of ethanal and pentan-3-one. Write structure and IUPAC name of ‘A’.
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An alkene ‘A’ contains three C – C, eight C – H σ bonds and one C – C π bond. ‘A’ on ozonolysis gives two moles of an aldehyde of molar mass 44 u. Write IUPAC name of ‘A’.
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Propanal and pentan-3-one are the ozonolysis products of an alkene? What is the structural formula of the alkene?
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Write a chemical equation for combustion reaction of the following hydrocarbon:
Butane
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Write a chemical equation for combustion reaction of the following hydrocarbon:
Pentene
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Write a chemical equation for combustion reaction of the following hydrocarbon:
Hexyne
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Write a chemical equation for combustion reaction of the following hydrocarbon:
Toluene
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Explain the following reaction.
Silicon dioxide is treated with hydrogen fluoride.
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If the starting material for the manufacture of silicones is RSiCl3, write the structure of the product formed.
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Bromine monochloride, BrCl decomposes into bromine and chlorine and reaches the equilibrium:
\[\ce{2BrCl (g) ⇌ Br2 (g) + Cl2 (g)}\]
for which Kc= 32 at 500 K. If initially pure BrCl is present at a concentration of 3.3 × 10–3 molL–1, what is its molar concentration in the mixture at equilibrium?
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Which of the two: O2NCH2CH2O– or CH3CH2O–is expected to be more stable and why?
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What is meant by ‘demineralised’?
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Is demineralised or distilled water useful for drinking purposes? If not, how can it be made useful?
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Which of the following pair of elements would have a more negative electron gain enthalpy?
O or F
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how can demineralised be obtained?
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Wavelengths of different radiations are given below:
λ(A) 300 nm, λ(B) 300 µm, λ(C) 3 nm, λ(D) = 30 A°
Arrange these radiations in the increasing order of their energies.
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Match the following
| (i) X-rays | (a) ν = 100 – 104 Hz |
| (ii) UV | (b) v = 1010 Hz |
| (iii) Long radio waves | (c) v = 1016 Hz |
| (iv) Microwave | (d) v = 1018 Hz |
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