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NATIONAL
SENIOR CERTIFICATE
GRADE 11
LIFE SCIENCES P2
EXEMPLAR 2013
MARKS: 150
TIME: 2½ hours
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Life Sciences P2 Grade 11 Exemplar 2013 Eng_hlayiso.com_.pdf
Life Sciences · Grade 11 · National Exemplar November Exam · 2013. Question paper, 14 pages. Read online or download the PDF.
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- Life Sciences
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- Grade 11
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- Question paper
- Year
- 2013
- Exam period
- National Exemplar November Exam
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Life Sciences/P2 2 DBE/2013
NSC – Grade 11 Exemplar
INSTRUCTIONS AND INFORMATION
Read the following instructions carefully before answering the questions.
1. Answer ALL the questions.
2. Write ALL the answers in your ANSWER BOOK.
3. Start the answers to EACH question at the top of a NEW page.
4. Number the answers correctly according to the numbering system used in this
question paper.
5. Present your answers according to the instructions for each question.
6. ALL drawings should be done in pencil and labelled in blue or black ink.
7. Draw diagrams or flow charts only when asked to do so.
8. The diagrams in this question paper are NOT necessarily all drawn to scale.
9. Do NOT use graph paper.
10. You may use a non-programmable calculator, protractor and compass.
11. Write neatly and legibly.
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Life Sciences/P2 3 DBE/2013
NSC – Grade 11 Exemplar
SECTION A
QUESTION 1
1.1 Various options are provided as possible answers to the following questions.
Choose the correct answer and write only the letter (A to D) next to the
question number (1.1.1 to 1.1.10) in the ANSWER BOOK, for example
1.1.11 D.
1.1.1 Which of the following produce antibodies?
A Blood plasma
B Lymphocytes
C Macrophages
D Red blood cells
1.1.2 Which of the following is a characteristic feature of mosses?
A Xylem
B Phloem
C Seeds
D Spores
1.1.3 The diagram below represents a bacterial cell.
Which of the following represent parts 1, 2 and 3?
A Plasmid, flagellum, capsule
B Flagellum, capsule, plasmid
C Plasmid, capsule, flagellum
D Capsule, plasmid, flagellum
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Life Sciences/P2 4 DBE/2013
NSC – Grade 11 Exemplar
1.1.4 The mechanism that forms the first line of defence in humans
includes the …
A development of fever.
B action of phagocytes.
C use of antibiotics.
D development of antigens.
1.1.5 A young woman stepped on a dirty, rusty nail. The diagrams below
show bacteria isolated from the wound and a range of antibodies
that were already present in her body. The antibodies have a
specific shape that binds with the antigen found on the surface of
the bacteria.
Bacteria Antibodies
The bacterium most likely to cause a severe infection is …
A M.
B N.
C O.
D P.
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Life Sciences/P2 5 DBE/2013
NSC – Grade 11 Exemplar
1.1.6 An investigation was carried out to test the effectiveness of four
antifungal treatments on preventing the growth of yeast. The
results are shown in the diagram below.
KEY
Mycoban Yeast growth
Fungisan No yeast growth
Fungiclear
Antifungal treatment
Mycocide
Which ONE of the following conclusions can be made from the
results?
A All the antifungal treatments are equally effective.
B All the antifungal treatments are ineffective.
C Mycocide is most effective and Fungisan is least effective.
D Fungisan is most effective and Mycocide is least effective.
1.1.7 In which of the following plant groups do male gametes depend on
water/moisture to swim towards the ovum?
A Pteridophytes and gymnosperms
B Pteridophytes and angiosperms
C Bryophytes and pteridophytes
D Bryophytes and gymnosperms
1.1.8 The following are characteristics of different plant groups:
1 Vascular tissue
2 Seeds
3 Flowers
4 True leaves and roots
The characteristics found in pteridophytes are …
A 1, 2, 3 and 4.
B 1, 2 and 4.
C 1 and 4.
D 2, 3 and 4.
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Life Sciences/P2 6 DBE/2013
NSC – Grade 11 Exemplar
1.1.9 Which ONE of the following represents a positive human impact on
the environment?
A Pollution
B Conservation
C Environmental degradation
D Population explosion
1.1.10 When an infection was treated with a new drug, the inflammation
decreased. In a few patients the inflammation returned after one
week. The probable reason for this is that …
A the patients developed an allergic reaction to the drug.
B the decrease in inflammation allowed the pathogens to become
resistant to the drug.
C the white blood cells were not functioning properly and
therefore the inflammation returned.
D a few pathogens resistant to the drug were present at the start
of treatment, the drug could not kill them and so they
reproduced. (10 x 2) (20)
1.2 Give the correct biological term for each of the following descriptions. Write
only the term next to the question number (1.2.1 to 1.2.10) in the ANSWER
BOOK.
1.2.1 Species living in a habitat in which they are not naturally found
1.2.2 The variety of life on Earth
1.2.3 A micro-organism used in the manufacturing of beer and bread
1.2.4 A collective name for animals without a backbone
1.2.5 The sensible and careful use of resources so that they will be
available to future generations as well
1.2.6 A type of reproduction that does not involve the fusion of male and
female gametes
1.2.7 A measure of the total greenhouse gas emissions by an individual,
company or a country per year
1.2.8 The gradual change of a productive land into an increasingly arid
one, losing all its vegetation and wildlife
1.2.9 The type of fertilisation occurring in flowering plants
1.2.10 The group of sporangia in a fern plant (10)
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Life Sciences/P2 7 DBE/2013
NSC – Grade 11 Exemplar
1.3 Indicate whether each of the statements in COLUMN I applies to A ONLY,
B ONLY, BOTH A AND B or NONE of the items in COLUMN II. Write A only,
B only, both A and B or none next to the question number (1.3.1 to 1.3.10)
in the ANSWER BOOK.
COLUMN I COLUMN II
1.3.1 The type of symbiotic relationship A: commensalism
displayed by E. Coli living in the B: mutualism
human intestines
1.3.2 All organisms in this phylum are A: Porifera
sessile B: Chordata
1.3.3 The role of antigens in the body's A: trigger an immune response
defence B: bind to the invading pathogen
1.3.4 Reproduce through binary fission A: viruses
B: fungi
1.3.5 Site constructed to dispose of A: reservoir
waste B: landfill
1.3.6 Greenhouse gases A: carbon dioxide
B: methane
1.3.7 Factors decreasing water A: destruction of wetlands
availability B: exotic/alien plants
1.3.8 The result of an increase in A: global warming
carbon dioxide in the atmosphere B: acid rain
1.3.9 The dominant generation in A: gametophyte
flowering plants B: sporophyte
1.3.10 Root-like structures in moss A: thallus
plants B: rhizoids
(10 x 2) (20)
TOTAL SECTION A: 50
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Life Sciences/P2 8 DBE/2013
NSC – Grade 11 Exemplar
SECTION B
QUESTION 2
2.1 The diagram below represents a cladogram (phylogenetic tree) showing
relationships between animal phyla. The letters (A to D) indicate the
characteristics shared by the different phyla of animals which follow the letter.
The point where various phyla differ from each other is indicated by the
branching-off/split into new phyla.
Porifera Platyhelminthes Annelida Arthropoda
Cnidaria Chordata
D
C
B
multicellular A
A simplified cladogram showing relationships between some animal phyla
2.1.1 Which characteristic is shared by all the organisms in the animal
kingdom according to the cladogram? (1)
2.1.2 Which LETTER represents each of the following characteristics
with respect to the body plan:
(a) Cephalisation (1)
(b) Triploblasty (1)
(c) Coelom (1)
(d) Bilateral symmetry (1)
(e) Segmentation (1)
(f) Vertebral column (1)
(g) Symmetry (1)
2.1.3 Explain ONE importance of the development of a coelom. (2)
2.1.4 Write down the names of the phyla that display the characteristic
represented by C but not the characteristic represented by D. (2)
2.1.5 Describe ONE way in which the coelom of annelids and arthropods
are different. (2)
2.1.6 State ONE role of arthropods in agriculture. (1)
(15)
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Life Sciences/P2 9 DBE/2013
NSC – Grade 11 Exemplar
2.2 Study the diagrams below showing the structures of two flowers as well as a
pine cone. The magnification of each flower is indicated in brackets.
D
F
E
Flower A (x 20) Flower B (x 0,5) Pine cone
2.2.1 Label parts D, E and F. (3)
2.2.2 Which flower (A or B) is probably pollinated by insects? (1)
2.2.3 Give ONE observable reason for your answer to QUESTION 2.2.2. (1)
2.2.4 Which flower (A or B) is larger? (1)
2.2.5 Identify the groups to which flower A and the pine cone belong. (2)
2.2.6 State ONE way in which the seeds of the groups named in
QUESTION 2.2.5 differ. (2)
2.2.7 Explain how the dependency on water for reproduction is reduced
in the group represented by the pine cone. (2)
2.2.8 State TWO advantages of seeds over spores. (2)
(14)
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Life Sciences/P2 10 DBE/2013
NSC – Grade 11 Exemplar
2.3 Study the extract about malaria below.
Malaria is a parasitic disease which occurs mainly in tropical and subtropical
regions. It is transmitted in humans through the bite of a female mosquito of
the Anopheles species, which is the vector for the parasite. It is estimated that
1 to 3 million people die from malaria every year and the majority are children
from Sub-Saharan Africa.
The most effective way of managing malaria is to destroy its vector. An
insecticide which has been successful to date is DDT. The inner walls of the
house are sprayed with DDT so that the mosquitoes die if they sit on or near
them. However, the use of DDT has been banned since 1972.
In South Africa the incidence of malaria has been less than 10 000 cases per
year. South Africa only stopped its use of DDT in 1996. The number of
infections recorded since has increased to 64 000 in 2000. When the use of
DDT was re-introduced only for disease-vector control, the reported cases in
South Africa decreased to 7 000 in 2005.
2.3.1 To which group of micro-organisms does the malaria parasite
belong? (1)
2.3.2 State any TWO ways to avoid contracting malaria. (2)
2.3.3 Describe how the malaria parasite is passed from one human to
another. (2)
2.3.4 Give ONE reason why a person with malaria cannot be treated by
using an antibiotic. (2)
2.3.5 Explain how an increase in the number of malaria infections would
affect the South African economy. (2)
2.3.6 Suggest ONE way in which the data about the number of infections
was collected. (1)
2.3.7 Give ONE reason why the number of infections might have been
more than 7 000 in the year 2005. (1)
(11)
[40]
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Life Sciences/P2 11 DBE/2013
NSC – Grade 11 Exemplar
QUESTION 3
3.1 Study the table below showing the amount of food wasted per person per
year in different developed and developing regions of the world.
Region Level of Food loss and waste
development per person per year (kg)
Total At production By
and retail consumers
stages
Europe Developed 280 190 90
North America and 295 185 110
Oceania Developed
Industrialised Asia Developed 240 160 80
Sub-Saharan Africa Developing 160 155 5
North Africa, West Developing 215 180 35
and Central Asia
South and Southeast Developing 125 110 15
Asia
Latin America Developing 225 200 25
[Adapted from CUP Biology, Jones and Jones, 2010]
3.1.1 For Sub-Saharan Africa, calculate the food wastage by consumers
as a percentage of the total food waste. (3)
3.1.2 Give a possible explanation for the low percentage calculated in
QUESTION 3.1.1. (2)
3.1.3 Give an explanation for the difference in the pattern of food
wastage in developed and developing regions. (4)
3.1.4 State TWO possible ways of preventing the high levels of food
waste that is found in developed countries. (2)
(11)
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Life Sciences/P2 12 DBE/2013
NSC – Grade 11 Exemplar
3.2 Despite a great increase in the demand for food, only 7% more land is now
used for farming. One of the reasons for this is increased productivity, that is a
higher yield per hectare, due to GMOs as well as the use of chemicals.
In the last 30 years, people have become more aware of the use of chemicals
in farming. Some people are concerned about the effects of these on their
health and choose to buy organically grown produce. Farmers who use
organic methods to produce food do not use chemicals on their crops.
3.2.1 Give ONE reason for an increase in the demand for food over the
years. (1)
3.2.2 State ONE way in which the use of each of the following helps to
increase productivity:
(a) Pesticides (1)
(b) Fertilisers (1)
3.2.3 Describe how the use of pesticides could destroy food chains. (2)
3.2.4 Explain why GMOs can be considered to be a threat to food
security. (3)
3.2.5 Describe how fertilisers cause eutrophication when they are
washed into rivers. (5)
(13)
3.3 List FOUR strategies you would use to manage solid waste if you were
appointed as the head of the waste disposal division of your town. (4)
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Life Sciences/P2 13 DBE/2013
NSC – Grade 11 Exemplar
3.4 Ozone is found at low concentrations 15–50 km above the Earth's surface in
the stratosphere. Measurements showed that there is a significant decrease
in the amount of ozone. It has been observed that there are holes in the
ozone layer which get bigger each year.
The main chemical responsible for the depletion of the ozone layer is chlorine,
which comes from the breakdown of CFCs (chloroflouro-carbons). The CFCs
are broken down by sunlight into chlorine atoms which then react with the
ozone. Ozone is destroyed in this reaction. The problem is worse in the polar
regions because of the low temperatures.
An investigation to measure the ozone concentration and the chlorine levels
have been done in Antarctica since 1950 and the results are shown in the
graph below:
4,0 400
3,5 350
Ozone
3,0 300
Chlorine levels (ppbv)
Ozone concentration
2,5 250
2,0 200
Chlorine
(arbitrary units)
1,5 150
1,0 100
0,5 50
0 0
1950 1960 1970 1980 1990
Year
[Adapted from Ecology and Conservation, Cambridge University Press]
3.4.1 Give a caption for the graph. (2)
3.4.2 What is the relationship between the levels of chlorine and the
concentration of ozone? (2)
3.4.3 Name the dependent variable(s) in the investigation. (2)
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Life Sciences/P2 14 DBE/2013
NSC – Grade 11 Exemplar
3.4.4 In which 10-year period was the ozone depletion the greatest? (1)
3.4.5 In 1987 the Montreal Protocol was signed to lay down targets to
reduce the use of CFCs by countries. Give TWO reasons why,
despite a reduction in the use of CFCs, there was a decline in the
ozone layer. (2)
3.4.6 Name ONE item that humans were using which contained CFCs. (1)
3.4.7 Explain why the ozone layer is important for humans. (2)
(12)
[40]
TOTAL SECTION B: 80
SECTION C
QUESTION 4
The greatest threat to biodiversity is the destruction of habitats. Describe how various
human activities may lead to habitat loss.
Content: (17)
Synthesis: (3)
[20]
NOTE: NO marks will be awarded for answers in the form of flow charts or
diagrams.
TOTAL SECTION C: 20
GRAND TOTAL: 150
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