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NATIONAL
SENIOR CERTIFICATE
GRADE 11
NOVEMBER 2020
PHYSICAL SCIENCES P1
(EXEMPLAR)
MARKS: 150
TIME: 3 hours
This question paper consists of 19 pages including 2 datasheets.
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PHYS P1 GR11 QP NOV2020_English_hlayiso.com_.docx_hlayiso.com_.pdf
Physical Sciences · Grade 11 · Eastern Cape November · 2020 · English. Question paper, 19 pages. Read online or download the PDF.
- Subject
- Physical Sciences
- Grade
- Grade 11
- Language
- English
- Document type
- Question paper
- Year
- 2020
- Exam period
- Eastern Cape November
- Paper
- 1
- Pages
- 19
- File size
- 1.6 MB
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2 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
INSTRUCTIONS AND INFORMATION
1. Write your full NAME and SURNAME in the appropriate space on the ANSWER
BOOK.
2. This question paper consists of TEN questions. Answer ALL the questions in
the ANSWER BOOK.
3. Start EACH question on a NEW page.
4. Number the answers correctly according to the numbering system used in this
question paper.
5. Leave ONE line between two sub questions, for example between QUESTION
2.1 and QUESTION 2.2.
6. You may use a non-programmable calculator.
7. You may use appropriate mathematical instruments.
8. Show ALL formulae and substitutions in ALL calculations.
9. Round off your FINAL numerical answers to a minimum of TWO decimal
places.
10. Give brief motivations, discussions, et cetera where required.
11. You are advised to use the attached DATA SHEETS.
12. Write neatly and legibly.
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 3
QUESTION 1: MULTIPLE-CHOICE QUESTIONS
Four possible options are provided as answers to the following questions. Each
question has only ONE correct answer. Choose the best answer and only write down
(A–D) next to the question numbers (1.1–1.10) in the ANSWER BOOK, for example
1.11 D.
1.1 Which ONE of the following forces CANNOT be equal to zero?
A Normal force
B Frictional force
C Gravitational force
D Applied force (2)
1.2 The diagram below represents four vectors Q, R, S and T.
Q
R
T
S
Which ONE of the vectors is the resultant of the other three vectors?
A Q
B R
C S
D T (2)
1.3 A girl of weight 600 N is standing on a bathroom scale in a lift that is moving
and she noticed that the scale reads 560 N. Which ONE of the following is the
CORRECT conclusion about the motion of the lift? The lift is …
A accelerating upwards.
B accelerating downwards.
C moving upwards at constant velocity.
D moving downwards at constant velocity. (2)
1.4 Passengers in a moving car are advised to wear safety belts. This will reduce
their chances of getting injured in the event of an accident. This precaution is
an application of which ONE of the following Physics laws?
A Newton’s first law
B Newton’s second law
C Newton’s third law
D Newton’s law of universal gravitation (2)
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4 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
1.5 Which ONE of the graphs below represents the relationship between the
gravitational force F between two objects and the distance r between the
objects?
A B
F (N) F (N)
1
𝑟2 1
𝑟2
C D
F (N) F
1 1
𝑟2 𝑟2
(2)
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 5
1.6 A light ray passes from air into a glass prism. The ray is refracted through the
prism and emerges out of the prism as shown in the diagram below.
𝜃1
𝜃2
𝜃3
𝜃4
Which ONE of the following statements is TRUE regarding the diagram
above?
A 𝜃4 = 𝜃3
B 𝜃4 = 𝜃1
C 𝜃4 = 𝜃2
D 𝜃1 = 𝜃2
1.7 Every point of a wave front serves as a point source of spherical, secondary
waves that move forward with the same speed as the wave. This definition
represents …
A refraction.
B diffraction.
C wave front.
D Huygens’ principle. (2)
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6 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
1.8 Two identical neutral spheres P and Q are placed on insulating stands. They
are brought into contact with each other and a charged rod is brought near
sphere P as shown on the diagram below.
P Q
Charged rod
After the spheres made contact, they were separated and it was found that
electrons were transferred from sphere P to sphere Q. Which ONE of the
following concerning the charges on the two spheres is TRUE?
SPHERE P SPHERE Q
A Positive Positive
B Positive Negative
C Negative Negative
D Negative Positive (2)
1.9 The magnitude of the induced emf across the ends of a loop is equal to the …
A radius of the loop.
B thickness of the wire.
C temperature of the wire.
D rate of change the magnetic flux linkage with the wire. (2)
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 7
1.10 In the circuit diagrams below the SAME battery and SAME IDENTICAL
resistors are used. The internal resistance of the battery is ignored.
In which ONE of the following circuits will the resistors have the highest
potential difference?
A B
A
A
R1 R1
R2 R3 R2
R3
C D
A R1
A
R2
R1 R2 R3 R3
(2)
[20]
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8 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
QUESTION 2
A pulley system is used to keep a crate of mass M kg stationary as shown on the
diagram below.
T2
S 30o
245 N
M kg
T1
2.1 Define the term resultant vector. (2)
2.2 Calculate the:
2.2.1 Vertical and horizontal components of T2 (4)
2.2.2 Magnitude of T1 (2)
2.2.3 Mass M of the crate (3)
[11]
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 9
QUESTION 3
A 250 N force is applied on a block of mass 25 kg. The 25 kg block is connected to
a 10 kg block by a light inextensible string through a frictionless pulley as shown on
the diagram below. The 250 N force acts at an angle of 25o to the horizontal so that
the system of blocks accelerates to the left. The coefficient of kinetic frictional force
between the 25 kg block and the surface is 0,15.
250
N
25 kg
25o
10 kg
3.1 Define the term kinetic frictional force. (2)
3.2 Draw a labelled free-body diagram of all forces acting on the 25 kg block. (5)
3.3 Calculate the:
3.3.1 Normal force exerted by the surface on the 25 kg block (3)
3.3.2 Acceleration of the system of blocks (7)
[17]
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10 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
QUESTION 4
Two blocks of masses 1,5 kg and 3,2 kg are connected by a light inextensible string.
A 24 N force is applied on a system of blocks to move them up an inclined surface
which is 25o to the horizontal at a CONSTANT VELOCITY as shown on the diagram
below.
The 1,5 kg box experiences a constant frictional force of 2 N as it moves up the
incline.
24 N
20o
4.1 State Newton’s Second Law of Motion in words. (2)
4.2 Draw a labelled free-body diagram of all forces acting on the 1,5 kg block. (4)
4.3 Calculate the:
4.3.1 Tension in the string connecting the blocks (5)
4.3.2 Coefficient of kinetic frictional force between the 3,2 kg block and the
surface (6)
[17]
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 11
QUESTION 5
A satellite of mass 1 000 kg is orbiting the earth at a distance of 200 km from the
surface of the earth as shown on the diagram below.
Earth
Satellite
200 km
5.1 State Newton’s Law of Universal Gravitation in words. (2)
5.2 Calculate the magnitude of the force that the earth exerts on the satellite to
keep it in orbit. (5)
5.3 Calculate the weight of the satellite on the earth surface. (3)
5.4 The same satellite is now orbiting the earth at a distance twice the radius of
the earth from the centre of the earth. Without any further calculations,
determine the force that the earth exerts on the satellite at the new distance.
Explain how you arrived at your answer. (3)
[13]
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12 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
QUESTION 6
A light ray from a ray box is incident on a rectangular glass prism and the path of the
incident ray and emergent ray was traced to obtain the diagram below. The refractive
index of air and the refractive index of a glass are 1,00 and 1,52 respectively.
50o
𝜃
6.1 State Snell’s law in words. (2)
6.2 Calculate the:
6.2.1 Angle 𝜃, on the diagram (4)
6.2.2 Speed of light in glass (3)
6.2.3 Critical angle for glass (4)
6.3 Define total internal reflection. (2)
6.4 State TWO conditions necessary for total internal reflection to occur. (2)
[17]
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 13
QUESTION 7
A learner is investigating a certain phenomenon of light. He viewed red light through
a single slit and observed the pattern that is formed on a screen. He repeated the
experiment using blue light and observed the pattern on a screen again.
7.1 Name the phenomenon that the leaner is investigating. (1)
7.2 Draw separate diagrams for the patterns for red light and blue light that the
learner observed on the screen. Label clearly red and blue bands. (4)
7.3 Explain the differences observed in the patterns for red and blue light. (2)
7.4 Which nature of light does the phenomenon investigated demonstrate? (1)
7.5 What are the changes if any, that the learner will observe if the slit width is
made smaller? Explain your answer. (3)
[11]
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14 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
QUESTION 8
Two identical point charges are placed 100 mm apart in a vacuum as shown below.
The electrostatic force that Q1 exerts on Q2 is 5,09 N.
Q1 Q2
+ +
100 mm
8.1 Draw the electric field pattern between the two charges. (3)
8.2 Calculate the magnitude of each charge. (4)
8.3 Calculate the net electric field at point P, as shown on the diagram below.
Q1 Q2
+ + P
100 mm 50mm (5)
8.4 A third charge Q3 of magnitude 5 µC is now placed at point P as shown in the
diagram below.
Q1 Q2 Q3
+ + +
100 mm 50 mm
Calculate the net electrostatic force experienced by point charge Q2 due to
point charge Q1 and Q3. (5)
[17]
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 15
QUESTION 9
9.1 The diagram below represents a current-carrying conductor. Draw the
magnetic field pattern around this conductor.
(2)
9.2 A solenoid with a radius of 5 cm and 350 turns is pulled out of a magnetic
field of strength 5,20 T in 0,1 second. The solenoid is placed perpendicular
to the magnetic field.
9.2.1 State Faraday’s law in words. (2)
9.2.2 Calculate the magnetic flux linkage (Φ) with the solenoid. (3)
9.2.3 Calculate the induced emf in the solenoid. (3)
[10]
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16 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
QUESTION 10
10.1 A learner sets up the circuit below to investigate the relationship between
current and potential difference across the ends of a conductor. She closes the
switch and records the ammeter and voltmeter readings. She repeats the
experiment three times; each time she increases the number of cells in the
circuit. Then she reads and records the ammeter and voltmeter readings.
A
R
V
A graph of her results is shown below.
I (A)
1,0
0,8
0,4
0,2
0,6 1,2 2,4 3,0 V (V)
10.1.1 Which physical quantity does the gradient of the graph represent? (1)
10.1.2 Use the information from the graph to calculate the resistance of the
resistor that the learner used in the investigation. (3)
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 17
10.2 The battery in the circuit diagram below has negligible internal resistance. The
resistance of resistor R is unknown. When the switch is closed, the voltmeter
reads 15 V and the ammeter A1 reads 1 A.
15V
V
A
R
1A
A1 12 Ω
6Ω 6Ω
Calculate the:
10.2.1 Current in ammeter A (3)
10.2.2 Resistance of resistor R (5)
10.3 The resistor R of unknown resistance is now removed from the circuit. How
will this change in the circuit affect the reading of the ammeter A?
Answer INCREASE, DECREASE or REMAIN THE SAME. Explain your
answer. (2)
10.4 The power rating on an electric stove is 1 500 W. If the stove is used for
3 hours and 30 minutes, calculate how much it will cost to use the stove.
1 unit of electricity (1 kWh of electricity) costs R1,15. (3)
[17]
TOTAL: 150
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18 PHYSICAL SCIENCES P1 (EC/NOVEMBER 2020)
DATA FOR PHYSICAL SCIENCES GRADE 11
PAPER 1 (PHYSICS)
GEGEWENS VIR FISIESE WETENSKAPPE GRAAD 11
VRAESTEL 1 (FISIKA)
TABLE 1: PHYSICAL CONSTANTS/TABEL 1: FISIESE KONSTANTES
SYMBOL/
NAME/NAAM VALUE/WAARDE
SIMBOOL
Acceleration due to gravity / g 9,8 m•s-2
Swaartekragversnelling
Universal gravitational constant / G 6,67 × 10-11 N•m2.kg-2
Universelegravitasiekonstant
Speed of light in a vacuum / Spoed van lig in ʼn c 3,0 × 108 m•s-1
vakuum
Planck's constant / Planck se konstante h 6,63 × 10-34 J•s
Coulomb's constant / Coulomb se konstante k 9,0 × 109 N•m2•C-2
Charge on electron / Lading op elektron e -1,6 × 10-19 C
Electron mass / Elektronmassa me 9,11 × 10-31 kg
Mass of earth / Massa op aarde M 5,98 × 1024 kg
Radius of earth / Radius van aarde RE 6,38 × 103 km
TABLE 2: FORMULAE/TABEL 2: FORMULES
MOTION/BEWEGING
v f vi a t Δx v i Δt 21 at 2 or/of Δy v i Δt 21 at 2
v vf v vf
v f v i 2ax or/of v f v i 2ay
2 2 2 2
Δx i Δt or/of Δy i Δt
2 2
FORCE/KRAG
Fnet ma w mg
Gm 1 m2 𝑓 𝑚𝑎𝑥
F 2 𝜇𝑠 = 𝑠 𝑁
d
𝑓
𝜇𝑘 = 𝑁𝑘
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(EC/NOVEMBER 2020) PHYSICAL SCIENCES P1 19
WAVES, SOUND AND LIGHT/GOLWE, KLANK EN LIG
kQ 1Q 2 F
F (k = 9,0 x 109 N.m2.C-1) E
r2 q
kQ Q
E (k = 9,0 x 109 N.m2.C-1) n=
r2 qe
ELECTROMAGNETISM/ ELEKTROMAGNETISME
ΔΦ Φ = BA cos 𝜃
ε = −𝑁
Δ𝑡
ELECTRIC CIRCUITS/ELEKTRIESE STROOMBANE
𝑄 V
I = Δ𝑡 R
I
1 1 1
... R s R1 R 2 ...
R p R1 R 2
W = Vq
W
P
Δt
W = VI t
P = VI
W= I2R t
P = I2R
V2
W= V Δt
2
P
R R
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