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62 questions
Chemistry/Paper 1/Analytical Techniques
CAIEAS Level9701-as · Paper 1

Analytical Techniques

62 questions· page 1 of 7

Q402025 Feb/Mar·P121MMedium-Easy

Compound L contains carbon atoms. It is analysed in a mass spectrometer.

The table shows the relative abundance of the only two peaks recorded with m/em/e greater than 127.

m/em/erelative abundance
12850
1295.5

How many carbon atoms are present in one molecule of compound L?

Options

A   5
B   7
C   8
D   10

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Q402025 May/Jun·P111MMedium

Hydrocarbon X is saturated. Each molecule contains one ring of carbon atoms.

The mass spectrum of hydrocarbon X is measured.

The peak representing the M+\text{M}^+ ion is 14 mm14\text{ mm} high.

The peak representing the [M+1]+[\text{M}+1]^+ ion is 0.77 mm0.77\text{ mm} high.

What is the m/em/e value for the M+\text{M}^+ ion of X?

Options

A   56
B   58
C   70
D   72

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Q402025 May/Jun·P121MMedium-Easy

The mass spectrum of CH3Cl\text{CH}_3\text{Cl} shows a molecular ion peak, M+\text{M}^+, at the m/em/e value of 50 with a relative abundance of 18.0%18.0\%.

Other peaks are present in the mass spectrum.

What is seen in the mass spectrum at the m/em/e value of 52?

Options

A   a peak with relative abundance of 4.5%4.5\%
B   a peak with relative abundance of 6.0%6.0\%
C   a peak with relative abundance of 18.0%18.0\%
D   a peak with relative abundance of 54.0%54.0\%

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Q402025 May/Jun·P131MMedium

The mass spectrum of an organic compound has the following features.

  • The molecular ion peak is at m/e=60m/e = 60. This peak has a relative intensity = 100.
  • There is a peak at m/e=61m/e = 61, which has a relative intensity = 2.2.
  • There is no fragment peak at m/e=17m/e = 17.
  • There is a fragment peak at m/e=31m/e = 31.

What could be the identity of the organic compound?

Options

A   methyl methanoate, HCOOCH3\text{HCOOCH}_3
B   methoxyethane, CH3OC2H5\text{CH}_3\text{OC}_2\text{H}_5
C   ethanoic acid, CH3COOH\text{CH}_3\text{COOH}
D   propan-2-ol, CH3CH(OH)CH3\text{CH}_3\text{CH(OH)CH}_3

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Q402025 May/Jun·P141MMedium-Easy

The mass spectrum of element Z is shown.

What is element Z?

Options

A   arsenic
B   chlorine
C   gallium
D   tungsten

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Q402025 Oct/Nov·P121MMedium-Easy

The purity of a compound can be determined using infrared spectroscopy.

The table gives the characteristic infrared absorption frequencies for some selected bonds.

bondfunctional groups containing the bondcharacteristic infrared absorption range (in wavenumbers) / cm1\text{cm}^{-1}
C–Ohydroxy, ester1040–1300
C=Oamide, carbonyl, carboxyl, ester1640–1690, 1670–1740, 1710–1750
C=Caromatic compound, alkene1500–1680
C–Halkane2850–2950
O–Hcarboxyl, hydroxy2500–3000, 3200–3650
N–Hamine, amide3300–3500
C\equivNnitrile2200–2250

Propan-2-ol is made by hydration of propene. A sample of the product is obtained.

Which feature of the infrared spectrum of the product would show that no propene remains in the product?

Options

A   absorption in the 2900 cm12900\text{ cm}^{-1} region
B   strong absorption below 1000 cm11000\text{ cm}^{-1}
C   the lack of absorption at or near 1250 cm11250\text{ cm}^{-1}
D   the lack of absorption at or near 1550 cm11550\text{ cm}^{-1}

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Q402024 Feb/Mar·P121MMedium-Easy

The infrared spectrum of a compound is shown.

Which functional group could the compound contain?

Options

A   alcohol
B   carboxylic acid
C   ester
D   nitrile

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Q402024 May/Jun·P121MMedium-Easy

Compound X reacts with acidified K2Cr2O7\text{K}_2\text{Cr}_2\text{O}_7 to form compound Y.

The infrared spectrum of compound Y is shown.

bondfunctional groups containing the bondcharacteristic infrared absorption range (in wavenumbers) / cm⁻¹
C–Ohydroxy, ester1040–1300
C=Caromatic compound, alkene1500–1680
C=Oamide
carbonyl, carboxyl
ester
1640–1690
1670–1740
1710–1750
C≡Nnitrile2200–2250
C–Halkane2850–2950
N–Hamine, amide3300–3500
O–Hcarboxyl
hydroxy
2500–3000
3200–3600

What is the identity of compound X?

Options

A   propan-1-ol
B   propan-2-ol
C   propanone
D   propanoic acid

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Q402024 May/Jun·P131MEasy

A sample of but-2-enoic acid, CH3CH=CHCOOH\text{CH}_3\text{CH=CHCOOH}, is analysed using infrared spectroscopy.

The infrared spectrum shows a broad peak in the range 25003000 cm12500\text{--}3000\text{ cm}^{-1}.

bondfunctional groups containing the bondcharacteristic infrared absorption range (in wavenumbers) / cm1\text{cm}^{-1}
C–Ohydroxy, ester1040–1300
C=Oamide
carbonyl, carboxyl
ester
1640–1690
1670–1740
1710–1750
C=Caromatic compound, alkene1500–1680
C–Halkane2850–2950
O–Hcarboxyl
hydroxy
2500–3000
3200–3600
N–Hamine, amide3300–3500
C\equivNnitrile2200–2250

Which bond is responsible for this peak?

Options

A   C=C
B   C=O
C   C–O
D   O–H

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Q402024 Oct/Nov·P111MMedium-Easy

The diagram shows the mass spectrum of a sample of chlorine. Peaks V, W, X, Y and Z are labelled.

Which statements about this spectrum are correct?

1   The relative atomic mass of chlorine can be calculated from the abundances and m/em/e values of 2 of the 5 peaks.
2   37.0 g37.0\text{ g} of the species responsible for peak Z contains 3.011×10233.011 \times 10^{23} molecules.
3   The relative molecular mass of chlorine can be calculated from the abundances and m/em/e values of peaks X, Y and Z.

Options

A   1, 2 and 3
B   1 and 2 only
C   1 and 3 only
D   2 and 3 only

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