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OCR AS LEVEL 2025 BIOLOGY A Paper 2 QP + free study guide at end

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OCR AS LEVEL 2025 BIOLOGY A Paper 2 QP + free study guide at end

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Geüpload op
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Aantal pagina's
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2025/2026
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Voorbeeld van de inhoud

Oxford Cambridge and RSA

Thursday 22 May 2025 – Morning
AS Level Biology A
H020/02 Depth in biology
Time allowed: 1 hour 30 minutes

You can use:
* 1 4 4 2 4 2 9 8 3 9 *




• a scientific or graphical calculator
• a ruler (cm/mm)




* H 0 2 0 0 2 *




Please write clearly in black ink. Do not write in the barcodes.

Centre number Candidate number


First name(s)

Last name


INSTRUCTIONS
• Use black ink. You can use an HB pencil, but only for graphs and diagrams.
• Write your answer to each question in the space provided. If you need extra space use
the lined pages at the end of this booklet. The question numbers must be clearly shown.
• Answer all the questions.
• Where appropriate, your answer should be supported with working. Marks might be
given for using a correct method, even if your answer is wrong.

INFORMATION
• The total mark for this paper is 70.
• The marks for each question are shown in brackets [ ].
• Quality of extended response will be assessed in questions marked with an asterisk (*).
• This document has 24 pages.

ADVICE
• Read each question carefully before you start your answer.




© OCR 2025 [601/4261/3] OCR is an exempt Charity
DC (PQ/SW) 350639/7 Turn over


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, 2
1
(a) The table describes features of molecules.

Complete the table. Use ticks (3) to identify if the feature describes starch or cellulose.


Description Starch Cellulose


Is made of amylose and amylopectin


Is a long unbranched chain


Is made from β glucose molecules

[3]

(b) Students complete paper chromatography on carbohydrates.

The table shows the Rf values for known carbohydrates.
© researchgate.net, ResearchGate. Item removed due to third party copyright restrictions. Link to material - www.researchgate.net/publication/261143652_Extraction_of_Sugars_from_Black_Gram_Peels_by_Reversed-Phase_Liquid_Chromatography_Systems_and_Identification_by_TLC_and_Mass_Analy




The measurements recorded for an unknown carbohydrate were:

Distance travelled by solvent = 8.50 cm

Distance travelled by carbohydrate = 4.34 cm

Calculate the Rf value of the unknown carbohydrate and use the table to identify it.

Give your answer to 2 decimal places.




Rf value = ...............................................................

Name of carbohydrate = ...............................................................
[2]




© OCR 2025



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, 3
(c) Outline the role of the solvent in paper chromatography.

..........................................................................................................................................................

..........................................................................................................................................................

..........................................................................................................................................................

..........................................................................................................................................................

..................................................................................................................................................... [2]




© OCR 2025 Turn over

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, 4
2
(a) Students use a model cell to investigate the effect of the thickness of the exchange surface
membrane on the rate of diffusion across the membrane.

The students are provided with dialysis tubing of different thicknesses, grade 1, grade 3 and
grade 5, where grade 5 is the thickest.

They set up the apparatus as shown.

The students remove a sample of the external solution at 30 second intervals and determine the
concentration of glucose (mmol dm–3) in the sample.

Glass rod
String
Dialysis tubing

Glucose solution

External solution

Beaker



The table shows their results.

Concentration of glucose found in the samples of external
Grade of solution taken at 30 s intervals (mmol dm–3)
dialysis tubing
0s 30 s 60 s 90 s 120 s

1 0.00 1.31 2.52 3.59 4.80

3 0.00 0.82 2.24 2.39 3.31

5 0.00 0.31 0.64 0.96 1.22




© OCR 2025



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