AQA GCSE (9–1) AQA GCSE (9–1) Biology
Biology
Grade 5 Booster Workbook for Combined Science: Trilogy Build your confidence in achieving Grade 5 in AQA GCSE Combined Science: Trilogy.
Build your skills in applying knowledge and analysing information. Check your answers in the back of the book. Learn how to answer different types of question with worked examples. Improve your answers with hints and tips throughout.
AQA GCSE (9–1)
AQA GCSE (9–1)
Chemistry
Physics
Grade 5 Booster Workbook
Grade 5 Booster Workbook
for Combined Science: Trilogy
for Combined Science: Trilogy
Stephanie Grant Lynn Pharaoh
Dorothy Warren Gemma Young
Also suitable for AQA Combined Science: Synergy
AQA GCSE (9–1) Chemistry Grade 5 Booster Workbook for Combined Science: Trilogy 978-0-00-829654-4
Also suitable for AQA Combined Science: Synergy
AQA GCSE (9–1) Physics Grade 5 Booster Workbook for Combined Science: Trilogy 978-0-00-829655-1
ISBN 978-0-00-829653-7
Grade 5 Booster Workbook for Combined Science: Trilogy
Practise short and long answer questions for every topic.
AQA GCSE (9–1)
Biology
Grade 5 Booster Workbook for Combined Science: Trilogy
Heidi Foxford Shaista Shirazi
9 780008 296537
Also suitable for AQA Combined Science: Synergy
AQA GCSE 9-1_Biology_for Combined Science_Trilogy Grade 5 Booster Workbook_Ver3.indd 12 96537_Cover.indd 12
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Section 1: Cell biology
Plant and animal cells (eukaryotic cells) 1.
2.
Draw one line from each part of a cell to its correct function. Nucleus
Where photosynthesis occurs
Chloroplast
Controls what enters and leaves the cell
Cell membrane
Where the cell’s activities occur
Cell wall
Controls the cell’s activities
Cytoplasm
For support and protection
[5 marks]
The diagram shows an animal cell. Complete the labels on the diagram.
[3 marks]
3. Practical
Freddie wants to look at an onion cell under a light microscope. He places a thin layer of onion skin on a slide. a
Write the letters A–C in the correct order to show how he should prepare the slide. A: Use a paper towel to absorb any liquid that spreads out from under the coverslip. B: Use a pipette to add a small drop of iodine solution onto the slide. C: Place a coverslip onto the slide by lowering it carefully from one side. [1 mark]
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1 Why does Freddie use iodine solution?
b
[2 marks] State why it is important to ‘lower the coverslip carefully from one side’.
c
[1 mark]
Bacterial cells (prokaryotic cells) 1.
Use the words from the box to complete the sentences. multi
single
smaller
larger
plants
Prokaryotic cells are
bacteria and
complex
Literacy
than eukaryotic
more
simple
Most scientific words have a Greek or Latin origin which can help you remember the meaning. The prefix ‘pro’ means ‘before’ as prokaryotes are the earliest form of life on Earth.
cells. They are -celled organisms. Prokaryotes include and archaea.
[4 marks] 2.
The diagram shows a bacterial cell. Name the parts A, B, C and D.
A
B
C
D
A: B: C: D: 3.
[4 marks]
Name the part of the cell where genetic material is found, in 1 prokaryotic cells;
[1 mark]
2 eukaryotic cells.
[1 mark]
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4. Maths
Escherichia coli is a rod-shaped bacterium. Each bacterium measures approximately 2 μm in length. Convert this figure into mm. Show your workings.
= 5.
mm
[1 mark]
Maths
Give your answer to question 4 in standard form.
In standard form, a number is always written as: A × 10n
Maths
=
mm
[1 mark]
First, place the decimal point after the first nonzero digit. Then work out how many places this has moved the digit. This is the negative power of 10.
Size of cells and cell parts 1. Maths
Owen does some research and finds out the sizes of different cells and organelles. Put the cells and organelles in order of size, from smallest (1) to biggest (5). Cells/organelle type
2. Maths
Size
Order (1–5)
Egg cell
0.12 mm
Sperm cell
40.0 µm
Ribosome
20 nm
Nerve cell from giraffe’s neck
3m
Mitochondrion
2 µm
Baljit is using a microscope. The magnification of the eyepiece lens is ×10 and the magnification of the objective lens is ×40. What is the total magnification? Tick one box. ×40
×50
×400
×4000
[5 marks]
Practical You need to learn the formula: Total magnification = magnification of eyepiece × magnification of objective lens
[1 mark]
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1 3.
The image shows a drawing of some cells as viewed down a microscope.
Maths
Measure the width of the cell in the drawing.
25 µm
[1 mark] 4. Maths
In the image above, the actual width of one of the cells is 25 µm. Carry out the following steps to work out the magnification of the image. a
= b
µm [1 mark]
Worked Example
Converting units can be confusing. Remember there are 1000 micrometres (µm) in every millimetre (mm) so to convert mm to µm you need to ×1000.
Use the formula below to calculate the magnification of the image. Give your answer to one decimal place.
Common misconception
size of the image Magnification of the image = size of the real object
You need to learn this equation – it may not be given to you in an exam.
Magnification = 5.
Maths skills
Convert the 50 mm (measured width of cell) into micrometres (µm).
[1 mark]
The drawing shows a cheek cell as viewed down a microscope. The diameter of the actual cell is 6 µm. A student uses the drawing to estimate the diameter of the nucleus.
Diameter of the nucleus = 7 mm
[1 mark]
The student’s answer is incorrect as they have just measured the diameter of the nucleus with a ruler. This question requires you to estimate the size of the nucleus based on the ‘actual size’ measurements you are given. The nucleus in the image is about one-sixth of the diameter of the cell. The diameter of the nucleus is therefore about one-sixth of 6 µm, which is 1 µm.
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The electron microscope 1.
Describe what is meant by magnification. [1 mark]
2.
Which of the following is the best definition for ‘resolution’? Tick one box. The amount of colour seen in an image. The smallest distance between two points that can still be seen as two points. The smallest object that can be observed using a microscope. The amount by which a microscope can magnify.
3.
[1 mark]
Explain how electron microscopy has increased our understanding of sub-cellular structures.
[2 marks] 4.
Research laboratories often use electron microscopes rather than the light microscopes used in schools. Describe the advantages and disadvantages of using electron microscopes.
[4 marks]
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1
Cell specialisation and differentiation 1.
Use words from the box to complete the sentences. specialised
unspecialised
differentiate
mutated
cilia
We start our lives as a single fertilised egg which grows to become an embryo. At this , but have the potential to
point the cells are
into any of 200 or so specialised cell types that make up the human body. As a cell differentiates it develops sub-cellular to enable it to carry
structures such as
cell.
out a certain function. It has become a 2.
3.
The process of forming specialised cells to make them suitable for their function is called (tick one box): Adaptation
Differentiation
Specialisation
Mitosis
[4 marks]
Literacy
[1 mark]
How are muscle cells adapted to release a lot of energy?
Make sure you can explain the difference between key words that are closely linked. Cell differentiation is the process of how a specialised cell is made, whereas cell specialisation is how certain cells are adapted to a function.
[1 mark] 4.
The diagram shows a red blood cell. Describe and explain how red blood cells are adapted for the efficient uptake and transport of oxygen.
cell membrane
cytoplasm containing haemoglobin, which transports oxygen
[4 marks]
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Cell division by mitosis 1.
Which of the following statements best describes mitosis? Tick one box. Mitosis produces two new cells that are identical to each other, and to the parent cell. Mitosis produces one old cell and one new cell that are identical. Mitosis produces two new cells that are genetically different. Mitosis produces some cells that have double the amount of chromosomes.
2.
[1 mark]
Give the total number of chromosomes you would expect to find in a human cell produced by mitosis. [1 mark]
3.
Draw one line from each stage of the cell cycle shown in the diagram to link it with the correct description of the cell cycle in the table. The cytoplasm and membrane divide and two identical cells are formed. The DNA replicates to form two copies of each chromosome. One set of chromosomes is pulled to each end of the cell and the nucleus divides. The cell grows. The number of sub-cellular structures, e.g. mitochondria, increases.
4. Maths
A human cell completed the cell cycle in 23 hours 18 minutes. a
How many cell cycles would be needed to produce eight cells?
Number of cell cycles =
[1 mark]
Maths skills Questions that require you to carry out calculations may ask you to convert units, e.g. from hours to minutes or vice versa. Make sure you read the questions carefully. Underline the units you are asked to answer the question in.
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1 b
Calculate the time required in minutes for this cell to produce eight cells.
Time required = 5.
minutes
[2 marks]
In the cell cycle, where are chromosomes found before mitosis starts? [1 mark]
6.
State two things that must happen during the cell cycle before mitosis can begin. [1 mark]
Stem cells 1.
Use the words from the box below to complete the sentences. embryos
children
differentiate
mutate
bone-marrow
muscle
Most cells in your body are differentiated for one particular function, but some are completely unspecialised. These are called stem cells. They can into many different types of cells when they are needed. Human stem cells are found in and in some adult tissue such as 2.
3.
.
[3 marks]
A human stem cell can develop into what? Tick one box. Gametes
Some cells
Only nerve cells
Any type of human cell
[1 mark]
Plants also produce stem cells. What is the name of the tissue that produces stem cells in plants? [1 mark]
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4.
One way that scientists can investigate stem cells is to use spare embryos from in-vitro fertilisation (IVF) treatment. A fertilised egg develops into an embryo and stem cells are removed for research. Give one reason why people might object to research on embryonic stem cells. [1 mark]
5.
6.
To avoid ethical issues concerning embryos, stem cells in the future may be taken from which source? Tick one box. Blood
Umbilical cord
Rats
Lungs of an adult
[1 mark]
Stem cell transplants could help people with paralysis. What type of cell would need to be grown from stem cells to help a person with paralysis? [1 mark]
7. Worked Example
Evaluate the risks and benefits associated with the use of stem cells for medical treatments. A student’s answer to this question is shown below.
I think we should be using stem cells for treatments because it can make people’s illness or conditions better and can improve their quality of life. Stem cells can be used to treat and reduce suffering for many conditions like Parkinson’s and diabetes or after treatment for cancer. Another benefit is that there is hardly any risk of rejection. Overall, if a person is ill and can have stem cell treatment, it is better to take the risk because the benefits of a better life would always outweigh the risks.
The student has correctly outlined the benefits which would have gained 2 marks, but they have not outlined the risks (unknown long term side effects, chance of rejection if stem cells are not from same person). They have lost marks by not writing about what the risks are.
The student has evaluated the information they have presented and given an overall opinion based on this, so would get a mark for evaluating.
[6 marks]
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