Edexcel January 2014 Question Papers - GCE

Edexcel GCE Physics Question Papers and Mark Scheme



January 2014 Question Papers and Mark Scheme 

Question Paper:
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Edexcel June 2013 Question Papers - GCE Physics


Edexcel June 2013 Question Papers - GCE Physics


June 2013

Question Paper:

Complete Folder (Download)
  • Unit-1 (Download)                              Unit-1 (Download)                            
  • Unit-2 (Download)                              Unit-2 (Download
  • Unit-3B (Download)                           Unit-3B (Download
  • Unit-4 (Download)                              Unit-4 (Download
  • Unit-5 (Download)                              Unit-5 (Download
  • Unit-6B (Download)                           Unit-6B (Download
Mark Scheme:
  • Unit - 1 to 6 Complete folder (Download)



Edexcel GCE Physics Question Papers and Mark Scheme (May/June)

Edexcel GCE Physics Question Papers and Mark Scheme (May/June)


June 2009

Question Paper:
Mark Scheme:


    June 2010

    Question Paper:
    Mark Scheme:


      June 2011

      Question Paper:
      Mark Scheme:

        June 2012

        Question Paper:
        Mark Scheme:


        June 2013

        Question Paper:

        Complete Folder (Download)

        • Unit-1 (Download)                              Unit-1 (Download)                            
        • Unit-2 (Download)                              Unit-2 (Download
        • Unit-3B (Download)                           Unit-3B (Download
        • Unit-4 (Download)                              Unit-4 (Download
        • Unit-5 (Download)                              Unit-5 (Download
        • Unit-6B (Download)                           Unit-6B (Download
        Mark Scheme:

        • Unit - 1 to 6 Complete folder (Download)




        Edexcel GCE Physics Question Papers and Mark Scheme (January)

        Edexcel GCE Physics Question Papers and Mark Scheme (January)


        January 2009

        Question Paper:
        Mark Scheme:

          January 2010

          Question Paper:
          Mark Scheme:

            January 2011

            Question Paper:
            Mark Scheme:

              January 2012

              Question Paper:
              Mark Scheme:


                January 2013

                Question Paper:
                Mark Scheme:

                AS Physics Wave Note












                Physics Revision Notes – Waves



                1. All waves carry energy from one place to another. There are two types of waves:
                • Transverse waves have vibrations perpendicular to the direction of travel (e.g. all electromagnetic waves).

                • Longitudinal waves have vibrations in the same direction as that in which they are travelling (e.g. sound waves).
                  2.  The following words are used to describe waves: 

                • Amplitude – the distance from the horizontal axis to the peak (in m)

                • Wavelength (l)– the distance from peak to peak, or trough to trough 
                       (in m).


                • Frequency – the number of complete waves per second (in Hz).

                • Period – the time taken for one complete wavelength (in s). 

                   3. All waves can be reflected, refracted and diffracted:


                • Reflection– a wave bouncing off a surface.

                • Refraction– a wave bending when it passes through a different medium.

                • Diffraction – a wave spreading out when it passes through a narrow gap. 


                   4. The wave formula:

                     
                 velocity = Frequency x wavelength



                   5. Sound is a longitudinal wave:

                • The amplitude is related to its volume (a higher amplitude means a higher volume).

                • The wavelength is related to its pitch (a shorter wavelength means a higher pitch). 

                   6.  Sound is produced by objects vibrating :

                • The strings on a violin.
                • The surface of a drum.
                • The air in a trumpet.
                • The reeds in an oboe. 

                  7. A cathode ray oscilloscope shows sounds as transverse waves:






                  8. Ultrasound is a high frequency sound wave, and is used in industry, medicine, quality control and sonar by transmitting the waves, and observing the way in which they are reflected back.

                 9. The Earth consists of a crust, a mantle, a liquid outer core, and a solid inner core.

                10. There are two types of seismic waves:

                P-waves  are longitudinal. They travel through solids and liquids and are fast.

                S-waves  are transverse. They will only travel through solids and are slower than p-waves.

                 11. Properties of reflection:

                • The angle of incidence is always equal to the angle of reflection
                .
                • An image  is virtual, laterally inverted, and the same distance from the mirror as the object

                 12. Properties of refraction:

                • If a wave enters a denser medium (e.g. a perspex block), it will be bent towards the normal 

                The emerging ray will come out at the same angle, but displaced.

                • A Prism  can be used to split white light into the visible spectrum

                • When a wave passes into a different medium, it will either slow down or speed up.

                 13. Properties of total internal reflection :

                Total internal reflection is when a wave reflects off the inside of a block, rather that  refracting out of it.

                • The critical anglefor perspex is about 43°.

                • This principle is used in fibre optics(e.g. with endoscopes in medicine).



                MAGNETISM











                Magnetism

                1. Magnetic field: A region or a space where a moving charge experiences a force.

                2. Magnetic field line: The path taken by a hypothetical north when placed in a magnetic field.

                3. Magnetic flux: Total number of magnetic field lines passing through a given area.

                4. Transformer: A device that converts alternating emf at one level alternating emf at another, using electromagnetic induction

                5. Eddy currents: Small circular currents that oppose the laminar flow of magnetic flux through the soft iron core  (with reference to transformers).




                Magnetism Equation:



                I = n a v e

                When the conductor is perpendicular to the magnetic field

                F = BIl

                When the conductor is at an angle to the magnetic field

                F = BIl sin(theta)

                When the current is perpendicular to the magnetic field


                F = B q v

                When the current is at an angle to the magnetic field 
















                 
















                Physics Equations & Definitions





                CIRCULAR MOTION


                1. Angular displacement: The angle subtended at the centre of a curved path. Measured in radians.

                2. Angular velocity: The rate of change of angular displacement. Measured in radians per second (rad/s).


                Circular Motion Equation: 

                At the top of a circular loop, 

                SIMPLE HARMONIC MOTION


                1.  Simple Harmonic Motion: The motion of a particle about a fixed point such that its acceleration is proportional to its displacement from the fixed point and the acceleration is always directed towards this fixed point of frame of reference.
                2. Resonance: The maximization of the amplitude of driven oscillations, when the driver frequency is equal to the natural frequency. 
                3. Natural Frequency: The innate frequency due to length, structure and bonding at atomic level. 

                SIMPLE HARMONIC MOTION EQUATION

                GRAVITATION

                1. Gravitational field: A space or a region where a mass experiences a force of attraction.

                2. Gravitational field line: Shows the path taken by a mass when placed in a gravitational field.

                3. Gravitational field strength/intensity (g): The force experienced per unit mass in a gravitational field.

                4. Gravitational potential at a point: The work done in moving a unit mass from infinity to a point with the
                gravitational field.



                Gravitation Equation:


                Kopler's Law and Escape velocity

                • ELECTRIC FIELDS

                1.  Electric field: A space or a region where a charge experiences a force.
                2.  Electric field line: Shows the path taken by a unit positive charge when placed in an electric field. 
                3.  Electric field strength/intensity: The force experienced per unit charge in an electric field. 

                Electric Field Equation



                • Capacitance 






                Capacitors in series





                Capacitors in parallel 















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