Friday 16 June 2017 Morning

Similar documents
Friday 16 June 2017 Morning

Friday 12 June 2015 Afternoon

Wednesday 8 November 2017 Afternoon

Friday 17 June 2016 Morning

Wednesday 8 November 2017 Afternoon

Monday 24 June 2013 Morning

Friday 20 January 2012 Morning

Monday 24 June 2013 Morning

Monday 21 May 2012 Morning

Wednesday 25 May 2016 Afternoon

Wednesday 21 June 2017 Morning

Thursday 16 June 2016 Morning

PHYSICS B (ADVANCED PHYSICS) 2864/01 Field and Particle Pictures

Wednesday 21 June 2017 Morning

Tuesday 10 June 2014 Morning

A Level Physics B (Advancing Physics) H557/03 Practical skills in physics. Thursday 29 June 2017 Morning Time allowed: 1 hour 30 minutes

Wednesday 25 May 2016 Afternoon

* * MATHEMATICS 4721 Core Mathematics 1 ADVANCED SUBSIDIARY GCE. Monday 11 January 2010 Morning QUESTION PAPER. Duration: 1 hour 30 minutes.

A Level Physics B (Advancing physics) H557/02 Scientific literacy in physics

Friday 23 June 2017 Morning

A Level Physics B (Advancing Physics) H557/03 Practical skills in physics

Wednesday 14 June 2017 Morning

PHYSICS A 2822 Electrons and Photons

Thursday 29 June 2017 Morning Time allowed: 1 hour 30 minutes

Wednesday 20 May 2015 Afternoon

Thursday 9 June 2016 Afternoon Time allowed: 1 hour 30 minutes

GCSE (9 1) Combined Science A (Physics) (Gateway Science) J250/11 Paper 11, P4 P6 and CS7 (PAGs P1 P6)

Thursday 12 June 2014 Afternoon

GCSE (9 1) Physics B (Twenty First Century Science) J259/02 Depth in physics (Foundation Tier) Sample Question Paper SPECIMEN

Friday 21 June 2013 Morning

Wednesday 18 May 2016 Morning

GCSE (9 1) Physics A (Gateway Science) J249/04 Paper 4, P5 P8 and P9 (Higher Tier)

Monday 19 May 2014 Afternoon

Monday 14 January 2013 Morning

Monday 20 June 2016 Morning

PHYSICS A 2825/04 Nuclear and Particle Physics

G485. PHYSICS A Fields, Particles and Frontiers of Physics ADVANCED GCE. Wednesday 2 February 2011 Afternoon INFORMATION FOR CANDIDATES

MATHEMATICS 4728 Mechanics 1

Tuesday 24 May 2016 Morning Time allowed: 1 hour 30 minutes

G494. PHYSICS B (ADVANCING PHYSICS) Rise and Fall of the Clockwork Universe ADVANCED GCE. Monday 27 June 2011 Morning. Duration: 1 hour 15 minutes

Thursday 26 May 2016 Morning

SPECIMEN. Date Morning/Afternoon Time allowed: 1 hour 30 minutes. AS Level Physics A H156/02 Depth in physics Sample Question Paper PMT

Friday 17 June 2016 Afternoon

G491. PHYSICS B (ADVANCING PHYSICS) Physics in Action ADVANCED SUBSIDIARY GCE. Wednesday 12 January 2011 Morning. Duration: 1 hour

PHYSICS A 2821 Forces and Motion

Two boats, the Rosemary and the Sage, are having a race between two points A and B. t, where 0 t (i) Find the distance AB.

THIS IS A NEW SPECIFICATION MODIFIED LANGUAGE

THIS IS A NEW SPECIFICATION

Wednesday 17 June 2015 Morning

H H * * MATHEMATICS FOR ENGINEERING H860/02 Paper 2 LEVEL 3 CERTIFICATE. Wednesday 9 June 2010 Afternoon. Duration: 1 hour 30 minutes.

Friday 20 January 2012 Morning

B278A MATHEMATICS C (GRADUATED ASSESSMENT) MODULE M8 SECTION A GENERAL CERTIFICATE OF SECONDARY EDUCATION. Monday 8 March 2010 Morning WARNING

Wednesday 3 June 2015 Afternoon

MATHEMATICS 4725 Further Pure Mathematics 1

Thursday 19 June 2014 Morning

MATHEMATICS 4729 Mechanics 2

Wednesday 21 June 2017 Morning Time allowed: 2 hours 15 minutes

Wednesday 21 May 2014 Afternoon

Tuesday 23 May 2017 Morning

Tuesday 24 May 2016 Morning

Wednesday 8 June 2016 Morning

B293A. MATHEMATICS B (MEI) Paper 3 Section A (Higher Tier) GENERAL CERTIFICATE OF SECONDARY EDUCATION. Tuesday 12 January 2010 Morning WARNING

Wednesday 23 January 2013 Afternoon

Monday 8th June 2015 Morning

Thursday 11 June 2015 Afternoon

Wednesday 25 May 2016 Morning

Wednesday 8 June 2016 Afternoon

G484. PHYSICS A The Newtonian World ADVANCED GCE. Monday 27 June 2011 Morning. Duration: 1 hour

Tuesday 28 June 2016 Morning

Thursday 11 June 2015 Morning

PHYSICS A 2825/01 Cosmology

B294A. MATHEMATICS B (MEI) Paper 4 Section A (Higher Tier) GENERAL CERTIFICATE OF SECONDARY EDUCATION. Friday 15 January 2010 Morning WARNING

METHODS IN MATHEMATICS B392/02 Methods in Mathematics 2 (Higher Tier)

Cambridge International Examinations Cambridge International General Certificate of Secondary Education

Monday 8 January 2018 Morning

Candidate number. Centre number

Thursday 9 June 2016 Morning

GCSE (9 1) Physics B (Twenty First Century Science) J259/03 Breadth in physics (Higher Tier) Sample Question Paper SPECIMEN

Wednesday 30 May 2012 Afternoon

Monday 6 June 2016 Afternoon

MATHEMATICS 4723 Core Mathematics 3

Cambridge International Examinations Cambridge Ordinary Level

MATHEMATICS 4722 Core Mathematics 2

Tuesday 6 June 2017 Afternoon

Thursday 25 May 2017 Morning Time allowed: 1 hour 30 minutes

Monday 20 June 2016 Morning

G642. SCIENCE Science and Human Activity ADVANCED SUBSIDIARY GCE. Thursday 20 January 2011 Morning

SPECIMEN. Date Morning/Afternoon Time allowed: 1 hour 30 minutes. AS Level Physics A H156/01 Breadth in physics Sample Question Paper PMT

GENERAL CERTIFICATE OF SECONDARY EDUCATION MATHEMATICS B (MEI) B294B

Monday 10 June 2013 Morning

PHYSICS B (ADVANCING PHYSICS) 2863/01 Rise and Fall of the Clockwork Universe

Wednesday 24 May 2017 Afternoon

THIS IS A LEGACY SPECIFICATION

G494. PHYSICS B (ADVANCING PHYSICS) Rise and Fall of the Clockwork Universe ADVANCED GCE UNIT. Thursday 27 January 2011 Afternoon

Friday 14 June 2013 Morning

THIS IS A LEGACY SPECIFICATION

Cambridge International Examinations Cambridge International General Certificate of Secondary Education

OXFORD CAMBRIDGE AND RSA EXAMINATIONS A2 GCE 4733/01. MATHEMATICS Probability & Statistics 2 QUESTION PAPER

Wednesday 30 May 2012 Afternoon

Monday 18 June 2012 Morning

Transcription:

Oxford Cambridge and RSA F Friday 16 June 2017 Morning GCSE TWENTY FIRST CENTURY SCIENCE PHYSICS A/ADDITIONAL SCIENCE A A182/01 Modules P4 P5 P6 (Foundation Tier) *6720089455* Candidates answer on the Question Paper. A calculator may be used for this paper. OCR supplied materials: None Other materials required: Pencil Ruler (cm/mm) Duration: 1 hour * A 1 8 2 0 1 * INSTRUCTIONS TO CANDIDATES Write your name, centre number and candidate number in the boxes above. Please write clearly and in capital letters. Use black ink. HB pencil may be used for graphs and diagrams only. Answer all the questions. Read each question carefully. Make sure you know what you have to do before starting your answer. Write your answer to each question in the space provided. If additional space is required, you should use the lined page(s) at the end of this booklet. The question number(s) must be clearly shown. Do not write in the barcodes. INFORMATION FOR CANDIDATES The quality of written communication is assessed in questions marked with a pencil ( ). A list of useful relationships is printed on page 2. The number of marks is given in brackets [ ] at the end of each question or part question. The total number of marks for this paper is 60. This document consists of 20 pages. Any blank pages are indicated. [Y/601/7514] DC (RW/JG) 137745/3 OCR is an exempt Charity Turn over

2 TWENTY FIRST CENTURY SCIENCE DATA SHEET Useful Relationships The Earth in the Universe distance = wave speed time wave speed = frequency wavelength Sustainable Energy energy transferred = power time power = voltage current efficiency = energy usefully transferred total energy supplied 100% Explaining Motion speed = distance travelled time taken acceleration = change in velocity time taken momentum = mass velocity change of momentum = resultant force time for which it acts work done by a force = force distance moved in the direction of the force amount of energy transferred = work done change in gravitational potential energy = weight vertical height difference kinetic energy = 1 2 mass [velocity]2 Electric Circuits power = voltage current resistance = voltage current voltage across primary coil voltage across secondary coil = number of turns in primary coil number of turns in secondary coil Radioactive Materials energy = mass [speed of light in a vacuum] 2

3 Answer all the questions 1 For each of the following situations say whether there are no forces acting on the object, or there is a resultant force, or there are forces acting which are balanced. Put a tick ( ) in the one correct box for each situation. a ball accelerating as it falls vertically Situation No forces Resultant force a person parachuting falling vertically at constant speed a book resting on a table a car moving along a straight road without accelerating Balanced forces [4] [Total: 4] Turn over

2 Grace is playing golf. She swings her golf club so that it hits a stationary ball. 4 golf club direction club moves before hitting ball direction ball moves after being hit (a) (i) Why is the kinetic energy of the ball zero before it is hit?... [1] (ii) The ball has mass 0.050 kg and velocity 40 m/s after it has been hit. Calculate the kinetic energy of the ball after it has been hit. Show your working. kinetic energy =... J [2] (iii) Grace hears the club hit the ball. How does the amount of kinetic energy gained by the ball compare with the kinetic energy of the club just before it hits the ball? Put a ring around the correct answer. Justify your choice. less than the same more than...... [2]

(b) (i) Grace calculates that the momentum of the ball changes by 2.0 kg m/s. 5 Explain how she got this value....... [2] (ii) The force on the ball due to the club is 4000 N. How large is the force on the club? Put a ring around the correct answer. < 4000 N 4000 N > 4000 N [1] (iii) Grace hits the golf ball with a different club. The force on the ball is the same as before, but the club and ball are in contact for a longer time. Grace thinks this makes the ball go faster. Do you agree with Grace? Use ideas about momentum and time to explain your answer............. [2] [Total: 10] Turn over

6 3 A car travels along a straight horizontal road. The table shows how the speed of the car varies for part of its journey. Time (s) 0 10 20 30 40 50 60 70 80 Speed (m/s) 20 20 20 20 22 24 26 28 30 Use the data in the table to describe and explain the motion of the car. You may draw a sketch graph with important points clearly labelled to help you answer the question. The quality of written communication will be assessed in your answer.... [6] [Total: 6]

7 BLANK PAGE PLEASE DO NOT WRITE ON THIS PAGE Turn over

4 (a) Jake is buying an electric car. 8 (i) The car s source of energy is a battery, which is connected to an electric motor by metal wires. A voltmeter is used to measure the voltage across the battery. Complete the circuit diagram below by connecting the battery to the motor and showing the voltmeter connected correctly. M motor [3] (ii) There is an electric current in the connecting wires when the motor is working. What moves in the wires to cause this electric current? Put a tick ( ) in the box next to the correct answer. electrons and protons electrons only metal ions protons only [1] (iii) The diagram shows a switch which can be used to turn the motor on and off. A A Which of the following materials can be used for the parts labelled A? Put a ring around the two correct answers. aluminium copper plastic wood [1]

(b) The voltage of the battery is 300 V. 9 Which is the correct calculation to get the power of the motor when the current is 100 A? Put a ring around the correct answer. (100 300) (300 100) (300 + 100) (300 100) [1] (c) Jake discusses with Sam the advantages and disadvantages of electric cars compared with diesel powered cars. Jake Although electric cars cost more to buy, they are cheaper to run than diesel cars. They are very quiet when being driven. Sam Electric cars don t go very far before they need to be recharged. However, they don t pollute the atmosphere as much as diesel cars. (i) Why do diesel cars pollute the atmosphere more than electric cars?...... [1] (ii) Electric cars are very quiet. Suggest why this might be dangerous for pedestrians....... [1] [Total: 8] Turn over

5 Alyssia is doing electricity experiments. 10 (a) She investigates the current in circuits made from cells and lamps. All the cells are alike and all the lamps are alike. Here are four circuits she connects up. Each circuit contains an ammeter. A A A A circuit A circuit B circuit C circuit D For each statement choose the correct circuit. Put a letter A, B, C or D in each box to show your choice. You can use each letter once, twice or not at all. (i) The ammeter in this circuit has the smallest reading. [1] (ii) The ammeter in this circuit has the greatest reading. [1] (iii) In these TWO circuits the lamps are connected in parallel. and [1] (b) Alyssia then uses an LDR. Which is the symbol for an LDR? Put a ring around the correct symbol. [1]

(c) Alyssia uses a magnet and a coil of wire to generate electricity. 11 The coil is connected to a sensitive voltmeter. sensitive voltmeter coil of wire magnet moving into coil When Alyssia pushes the magnet into the coil the voltmeter reads 2 mv. (i) What is the reading on the voltmeter when the magnet is held stationary in the coil?... [1] (ii) What can Alyssia do to generate a voltage of 2 mv in the opposite direction?...... [1] [Total: 6] Turn over

12 6 Zac and Megan are doing an experiment with a thermistor. They use a 12 V power supply and an ammeter and voltmeter connected to the thermistor. They put the thermistor in a beaker of water and gently heat the water. They record the voltmeter and ammeter readings as well as the temperature of the water. Here are their results. Temperature ( C) 10 20 30 40 Voltage (V) 12 12 12 12 Current (ma) 0.60 1.0 1.5 2.4 Zac says: There is no correlation between temperature and current. Megan says: The resistance of the thermistor changes as it gets warmer.

Comment on Zac and Megan s statements. 13 Use the data to justify your answer. The quality of written communication will be assessed in your answer.... [6] [Total: 6] Turn over

14 7 Draw one straight line from each word to its correct meaning in the physics of radioactive materials. Word Meaning contains protons and electrons fusion gives out ionising radiation contains nuclei which never change nucleus a nucleus splits nuclei join radioactive small, massive and positive part of an atom [3] [Total: 3]

15 BLANK PAGE PLEASE DO NOT WRITE ON THIS PAGE Turn over

8 The graph shows how the activity of a radioactive source, X, decreases with time. 1200 16 1000 800 activity (counts per minute) 600 400 200 0 0 20 40 60 80 100 120 140 160 time (minutes) (a) At what time is the activity 200 counts per minute? Put a ring around the correct answer. 40 minutes 52 minutes 60 minutes 68 minutes [1] (b) The half-life of the source is 20 minutes. Explain how the graph shows this. Use data from the graph to support your answer.......... [2]

17 (c) Another radioactive source, Y, has a starting activity of 1200 counts/minute, like X. However, its half-life is much less than 20 minutes. If it is plotted on the same graph, where will the line be? Put a ring around the correct answer. below the line for X same place as X above the line for X [1] [Total: 4] Turn over

9 Background radiation is slightly higher in areas of the UK where there is granite rock. 18 Granite is radioactive, emitting gamma rays and radon gas. Some of the decay products of radon are also radioactive, emitting alpha particles. These decay products can stick to atmospheric dust. We breathe in this dust and it gets lodged in our lungs. (a) What is meant by background radiation?...... [1] (b) Use the information above about granite and radon decay products to explain the difference between contamination and irradiation................ [3] (c) Radioactive materials may also emit beta particles as well as alpha particles and gamma rays. These radiations are stopped by different materials. Complete the table by putting a tick ( ) in the box if the material stops the radiation passing through. You may put more than one tick in each row. Material very thick lead 3 mm of aluminium 0.5 m of air Type of radiation Alpha particle Beta particle Gamma ray [3] [Total: 7]

19 10 Ryan has been advised by doctors that he needs to have a full-body CT scan. The CT scan uses ionising radiation in order to produce an image of his internal organs. Ryan is concerned as he has heard that ionising radiation can damage the body. He has found the following information about doses of ionising radiation. Dose (millisievert) Average background dose per year 2.7 Lowest dose per year definitely linked to an increase in cancer later in life 100 Fatal dose 5000 Recommended highest dose per year 50 Chest X-ray 0.10 Dental X-ray 0.01 Eating one banana or 100 g of Brazil nuts 0.01 The doctors have told Ryan that the CT scan will give him a dose of 10 millisievert. Describe how ionising radiation can damage the body and explain why the doctors say that the benefits of a CT scan outweigh the risks. Use the data in your answer. The quality of written communication will be assessed in your answer.... [6] END OF QUESTION PAPER [Total: 6]

20 ADDITIONAL ANSWER SPACE If additional space is required, you should use the following lined page(s). The question number(s) must be clearly shown in the margin(s)............................................................. Oxford Cambridge and RSA Copyright Information OCR is committed to seeking permission to reproduce all third-party content that it uses in its assessment materials. OCR has attempted to identify and contact all copyright holders whose work is used in this paper. To avoid the issue of disclosure of answer-related information to candidates, all copyright acknowledgements are reproduced in the OCR Copyright Acknowledgements Booklet. This is produced for each series of examinations and is freely available to download from our public website (www.ocr.org.uk) after the live examination series. If OCR has unwittingly failed to correctly acknowledge or clear any third-party content in this assessment material, OCR will be happy to correct its mistake at the earliest possible opportunity. For queries or further information please contact the Copyright Team, First Floor, 9 Hills Road, Cambridge CB2 1GE. OCR is part of the Cambridge Assessment Group; Cambridge Assessment is the brand name of University of Cambridge Local Examinations Syndicate (UCLES), which is itself a department of the University of Cambridge.