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## SS 2 THIRD TERM PHYSICS EXAMINATIO1 questions

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THIRD TERM  EXAMINATION, 2010/2011 SESSION.
SUBJECT: PHYSICS 2
CLASS: SSS 2	       	              TIME ALLOWED: 2½HRS

SECTION A
1	The small droplet of water that forms on the grass in the early hours of the morning is. A. hail B. dew C. fog D. mist.
2	If a container is filled to the brim, what happens to the level of water when the ice completely melts?
A. The level of water goes up.
B. The water in the glass outflows.
C. The level of water remains unchanged.
D. The level of water drops.
3.	The sound of an electric bell dies down slowly when air is slowly pumped out from a bottle because
A. The wavelength of the sound becomes greater in the bottle.
B. Sound cannot pass through the bottle.
C. Sound needs a material medium
D. Sound can pass through a vacuum.
4.	Three capacitors of capacitance 2µF, 4µFand 8µF are connected in parallel and a p.d of 6V is maintained across each capacitor, the total energy stored is
A. 2.52 x 10-6J B. 6.90 x 10-6 J C. 2.52 x 10-4 J D. 6.90 x 10-4J
5.	A cell of emf 12V and internal resistance 4 is connected to an external resistor of resistance 2. Find the current flow.
A 5A B. 4A C. 3A D. 2A
6.

The diagram above shows a balanced metre bridge, the value of x is.
A. 75.0cm B. 66.7cm C. 33.3cm D. 25.0cm
7. 	Three 4 resistors connected in parallel have a potential difference of 16V applied across them. What is the total current in the circuit?
A. 14A B. 12A C. 10A D. 8A.
8. 	Power supply is transmitted at a very high voltage and low current in order to
A. makes it pass through the transformers.
B. increase the power supply
C. makes it travel fast
D. prevent overheating of the cell

9.

In the diagram above, if the south-poles of two magnets stroke a steel bar , the polarities at T and V will respectively be
A. South and North
B. North and South
C. North and North
D. South and South
10.	Two inductors of inductances 5mH and 15mH are connected in series and a current of 5A flows through them. The total energy stored in the inductors in [E =1/2I2L].	A. 0.500J B. 0.250J C. 0.625J D. 50.0J.
11.	A galvanometer with full scale deflection of 10mA is to be converted to a voltmeter with a full scale deflection of 5V. If a series resistance of 498? is used for the conversion, the resistance of the galvanometer is
A. 1? B. 2? C. 5? D. 10?
12.	In alternating current circuit at resonance, the angle lead or lag is
A. ?o B. ?/2o C. ?/3o D. 0o
13.	In Faraday’s law of electrolysis, a graph of mass deposited against the quantity of electricity is plotted. The slope of the graph gives
A. the electrochemical equivalent.
B. the energy released
C. the current flowing
D. the charge released.
14.	In a discharge tube, most of the gas is pumped out so that electricity is conducted at	A. low voltage B. Steady voltage C. high pressure D. low pressure.
15.	An electrical appliances is operated by eight chemical cells each of emf 2.0V connected in series. If two of the chemical cells are wrongly connected, calculate the total emf in the circuit.
16.

The diagram above shows two identical cells each of emf 2.5V and internal resistance of 2?. Determine the ammeter reading when the key is closed.
A. 0.500A B. 0.625A C. 1.000A D. 1.250A.
17.	The magnetism in a magnetized piece of soft iron bar can be destroyed by
A. Cutting the bar into smaller pieces
B. Placing the bar in a solenoid through which direct current is passed for a long time.
C. Placing the pole of the bar near the south pole of a strong magnetic bar.
D. Heating the bar to a very high temperature.

18	There is a relative motion between a bar magnet and a coil of insulated wire. On which of the following factors does the induced electromotive force in the coil depend?
I. Cross sectional area of the coil
II. Relative speed of motion
III strength of the magnet
IV. Number of turns in the coil.
A. I and II only B. I and III only C. II and III only D. I , II, III and IV.
19.	The soft iron core of a transformer is laminated so as to
A. reduces losses due to eddy current.
B. have maximum induction
C. have a steady emf at secondary coil
D. have complete flux leakage between primary and secondary.
20.	Which of the following functions is performed by manganese iv oxide in the leclanche cell?
A. Control of local action B. depolarization of the cell C. regulating current flow in the cell. D. reduction of the internal resistance of the cell.
21.	A car fuse marked 3A operates optimally on a 12V battery. Calculate the resistance of the fuse.
A. 36.0? B. 15.0? C. 9.0? D. 4.0?
22.	Find the cost of running a 60W lamp for 24hrs if the 1kwhr cost #5.00
A. # 14.4 B. #12.5 C. #7.2 D. #2.0
23. 	The quantity of electric charge stored in a capacitor is measured in
A. Farad B. Ampere C. Coulomb D. Volt.
24.	Calculate the energy stored in a 20uF capacitor if the p.d between the plates is 40V.
A. 3.2 x 10-2J B. 1.6 x 10-2 J C. 8.0 x 10-4 J D. 4.0 x 10-4 J
25. 	Which of the following statements is not correct?
A. Magnetic field is a region in which magnetic force may be detected.
B. A magnetic line of force is path along which a magnet North pole would move if it were free.
C. Magnetic fields are scalar quantities
D. Neutral points are obtained where the earths magnetic field is exactly equal and opposite to that due to magnet.
26.	Which of the following has No effect on radiation?
A. nature of the surface B. density C. temperature
27.	The potential difference across a parallel plate capacitor is 500V while the charge on either plate is 12µC. Calculate the capacitance of the capacitor
A. 6.0 x 10-3F B. 2.4 x 10-8F C. 2.4 x 10-4F D. 6.0 x 10-5 F
28.	A capacitor of capacitance 2µF is charged from 12V battery and discharged through a milliameter 0.02seconds. Determine the current recorded by the milliameter (N.B q = It)
A. 4.8 x 10-7A B. 8.3 x 10-6A C. 1.2 x 10-6A D. 1.2 x 10-3A

Use the diagram above to answer questions 29-32.
29.	Calculate the current in the circuit
A. 0.25A B. 0.30A C. 0.50A D. 0.75A
30	Calculate the power dissipated in the 2?
A. 0.125W B. 0.750W C. 0.250W D. 0.180W
31.	If the resistors were connected in parallel, calculate the new current in the circuit.
A. 1.25A B. 0.75A C. 0.68A D. 0.86A
32.	A current of 3A flows for 30minutes through a 2? resistor, calculate the electrical energy generated.	A. 350000J B. 33400J C. 34300J D. 32400J

33. 	In order to make an electron follow a circular path;
A. a magnetic field is applied perpendicular to its path
B. a magnetic field is applied parallel to its path
C. an electric field is applied perpendicular to its path
D. an electric field is applied parallel to its path.
34. 	A stone and a feather are dropped from the same height above the earth surface . Ignoring air resistance which of the following is correct?
A. The feather will be blown away by the wind while the stone drops steadily.
B. The stone and feather will both reach the ground at the same time.
C. The feather will reach the ground first.
D. The stone will reach the ground first.
35.	Which of the following factors does not affect the capacitance of a parallel plate capacitor?
A. Area of the plates B. Nature of the plates C. Distance of separation between the plates. D. Nature of insulating material between the plates.
36.	The equivalent capacitance of a 3µF capacitor and a 6µF capacitor connected in parallel is 	A. 2.0µF B. 3.0µF C. 4.5µF D. 9.0µF
37.	Which of the following statement about a bar magnet is correct?
A. Iron filings cling uniformly along the length of the magnet.
B. the magnetic properties are more pronounced at the middle of a magnet
C. it is impossible to have the same at the ends of a magnet.
D. the magnetic properties are more pronounced at the points near the ends of the bar magnet.
38.	Force experienced by a current- carrying conductor moving in a magnetic field is employed in the working of the : 	   I moving coil ammeter
II electric motor
III electric bell
A. I & II only B. II & III only C. I & III only D. I, II & III only
39.	An electrical device used to increase or decrease electromotive force of alternating current is a
A. transformer B. induction coil C. generator D. capacitor.
40.	A device which converts mechanical energy to electrical is a
A. generator B. capacitor C. inductor D. transformer.
41.	Electrical power is measured in
A. ampere B. coulomb C. kilowatt-hour D. kilowatt
42.	A resistor of resistance R is connected to a battery of negligible internal resistance. If a similar resistor is connected in series with it, the
A. effective resistance of the circuit is halved
B. total power dissipated is doubled
C. total current in the circuit is halved
D. terminal voltage is halved.
43. 	A cell of emf 1.5V is connected in series with a resistor of resistance 3.0ohms. A voltmeter connected across the cell registers 0.9V. Calculate the internal resistance of the cell.	A. 2.0? B. 3.0? C. 5.0? D. 6.0?
44.	A wire of resistivity 4.40 x 10-5 ?cm has a cross – sectional area of 7.50 x 10-4cm2. Calculate the length of thin wire that will be required to make a
4.0? resistor.	A. 82.50cm B. 68.18cm C. 15.90cm D. 11.94cm
45.	A battery of emf 12.0V and internal resistance 0.5? is connected to 1.5? and 4.0? series resistors. Calculate the terminal voltage of the battery.
A. 13.0V B. 11.0V C. 3.0V D. 1.0V

46.	If the direction of the current in a straight wire is reversed, the magnetic field
A. remains the same B. becomes parallel to the wire C. ceases to exist D. is oppositely directed.
47. 	An inductor of inductance 1.0H is connected in series with a capacitor of capacitance 2.0uF in an a.c circuit. Calculate the value of frequency that will make the circuit to resonate. ( fo = 1/2?vLC)
A. 112.5Hz B. 225.0Hz C. 353.5Hz D. 707.1Hz
48.	An ideal step – down transformer steps up
A. power B. voltage C. current D. energy.
49.	An ammeter connected to an a.c circuit records 5.5A. The peak current in the circuit is (N.B Irms= Io/vI)
A. 7.1A B. 3.5A C. 7.8A D. 3.9A
50.	The ability of a wave to spread around corners is called
A. polarization B. dispersion C. diffraction D. reflection.
51.	A lens that is thinner at the middle and thicker at the edges is
A. diverging B. converging C. plan-convex D. converging meniscus.
52	The amplitude of a sound wave determine its
A. frequency B. quality C. loudness D. pitch.
53.	Capacitors are used in the following devices EXCEPT
A. water pumping machines B.Ceiling fan C. electric irons D. television sets.
Use the diagrams below to answer questions 54-55

54.	Calculate the current in the circuit I =?
A. 0.60A B. 1.03A C. 5.00A D. 0.97A.
55.	Determine the potential difference V, across the parallel resistors.
A. 2.3V B. 2.0V C. 3.0V D.9.7V
56.	A galvanometer of internal resistance 50? and full scale deflection of 20mA is converted into a voltmeter by connecting a resistor of resistance 1950?in series to it. Calculate the maximum voltage that can be read by the voltmeter.
A. 20V B. 40V C. 30V D. 38V.
57.	In the wiring of houses, the fuse is connected to the wire coloured.
A. blue B. yellow C. brown D. yellow & green.
58. 	Which of the following factors does not affect the electric resistance of a wire?
A. length B. mass C. temperature D. cross-sectional area
59.	Which of the following factors will increase the sensitivity of a moving coil meter?
A. strong spring B. low number of turns C. small area of coli D. soft iron core.
60.	In order to prevent bar magnets from losing their strength, they are stored with keepers such that the two bars are placed with
A. Unlike poles facing each other and keepers placed at their ends.
B. like poles facing each other and the keepers placed at their ends.
C. like poles facing each other and the keepers placed between them
D. unlike poles facing each other and the keepers placed between them.

SECTION B PART 1

1(a)	What is a capacitance?
(b)	State the:
(i)	Factors which determine the capacitance of parallel plate capacitor.
(ii)	Effects of each factor on the capacitance.
2.	Explain with the aid of diagrams how an unchanged body can be charged positively by (a) contact (b) electrostatic induction (c) Mention one practical application of electrostatic induction.                NECO 2007.
3(a)	State the laws of electromagnetic induction.
(b)	Explain why efficiency of electric motor is not always 100%.          SSCE 1994.

4	List three (3) uses of:
(a)	an induction coil
(b)	an electromagnetic
SSCE 1995.
5(a)	Explain why direct current is used instead of an alternating current in electroplating.
(b)	Differentiate a.c generator from a d.c generator        NECO 2007/SSCE 2002.

6	State the differences between:
(a)	Voltmeter and voltameter
(b)	Electromotive force and terminal potential difference.    SSCE NOV/DEC.

7(a)	Explain the mechanism of electric conduction through liquids.
(b)	List Two (2) applications of electric conductions through liquids.  Nov/Dec 2005.

8(a)	State two factors which affect the mass of elements deposited during electrolysis.
(b)	List two non- electrolytes                                                     SSCE 2010.
(C) 	An electric current is passed through 200g of an electrolyte for 2mins. If the Z of the electrolyte is 8.33 x 10-4 Kg A-1S-1. Calculate the magnitude of current

9(a)	List two properties of cathode rays.
(b)	Explain how intensity and energy of cathode rays may be increased     SSCE 2009.
10(a) 	State three (3) factors which affect electrical resistance (R) of a wire.
(b)	State their effects on the resistance.
(c) 	The resistance of wire of length 55cm and diameter 0.07cm is 10?. Calculate resistivity of the material of the wire. (? = 22/7).                   SSCE 1992.

PART II
11(a)	With the aid of a simple diagram, explain how a step – down transformer works.
(b)	(i) State three (3) ways in which energy is lost in a transformer.
(ii) Mention how each of the losses in b (i) above can be minimized.
(c) 	A 95%	efficient transformer is used to operate a lamp rated 60W, 220V from 4400V a.c supply. Calculate the (i) ratio of the number of turns in the primary coil to that in the secondary coil of the transformer. (ii) Current taken from the mains circuit.                                                           SSCE 2007, 1992.
12(a)	(i) Name and explain the common defects of a primary cell.
(ii) State two advantages of a secondary cell over a primary cell.
(b)     Draw a labeled diagram to show the essential parts of a dry leclanche cell.
(c)    (i)Explain why six accumulators each of emf 2.0V connected in series can be used to start the car engine of a car whereas eight dry cells each of emf 1.5V connected in series cannot be used.
(ii) Name the materials used for positive terminal, the negative terminal and the electrolyte in a (I) Leclanche cell (II) Charged lead acid accumulator. SSCE 2006

13(a)	(i) What is meant by neutral point in a magnetic field.
(ii) Draw and labelled a diagram to show the pattern and direction of the magnetic field produced around a straight current – carrying wire.
(b)  When is an ammeter said to be (i) sensitive (ii) accurate
(c)	(i)Explain using a labeled diagram how a delicate magnetic material can be protected from the earth’s magnetic field.
(ii) A charge of 1.6 x 10-19 C enters a magnetic field 0f flux density of 2.0T with a velocity of 2.5 x 107m/s at an angle of 30o with the field. Calculate the magnitude of the force exerted on the charge.                                                 SSCE 2003.

14(a)	Explain what is meant by the statement: the capacitance of a parallel- plate capacitor is 2µF.
(b) 	State (i) three (3) factors on which its capacitance depend: (ii) three uses of capacitors.
(c)	Derive a formula for energy stored in a charged capacitor of capacitance, C, carrying a charge Q, on either plate.
(d)	Two parallel – plate capacitors of capacitance 2µF and 3µF are connected in parallel to a d.c source of 50V.
(i) Draw the circuit diagram of the arrangement.
(ii) Determine the charge on either plate of each capacitor.
(iii) Potential difference across each capacitor.
(iv) Combined energy of the capacitor.                               SSCE 1996; 1990.

15(a)	 Explain why emf of a cell is not always the same as the potential difference between its terminals.
(b)  State two sources of emf other than chemical cell.
(c)   Two cells each of emf 2V and internal resistance 0.5? are connected in series. They are made to supply current to a combination of three resistors, one of resistance 2? connected in series to a parallel combination of two other resistors each of resistance 3?.
(i) Draw the circuit diagram.
(ii) Calculate current in the circuit
(iii) Potential difference across the parallel combination of the resistors.
(iv) Lost volts of the battery.

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### SS 2 THIRD TERM PHYSICS EXAMINATIO1 guide

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