Yr12 Physics Course Outline IMCC 2017
... Wave particle duality and the quantum theory light exhibits many wave properties; however, it cannot only be modelled as a mechanical wave because it can travel through a vacuum a wave model explains a wide range of light-related phenomena, including reflection, refraction, dispersion, diffraction a ...
... Wave particle duality and the quantum theory light exhibits many wave properties; however, it cannot only be modelled as a mechanical wave because it can travel through a vacuum a wave model explains a wide range of light-related phenomena, including reflection, refraction, dispersion, diffraction a ...
Questions 51-52 - ISMScience.org
... A) infinite only if there are no charges enclosed by the surface B) infinite only if the net charge enclosed by the surface is zero C) zero if only negative charges are enclosed by the surface D) zero if only positive charges are enclosed by the surface E) zero if the net charge enclosed by the surf ...
... A) infinite only if there are no charges enclosed by the surface B) infinite only if the net charge enclosed by the surface is zero C) zero if only negative charges are enclosed by the surface D) zero if only positive charges are enclosed by the surface E) zero if the net charge enclosed by the surf ...
Electrostatic Fields and Coulombs Law File
... one electron. Near to the Earth’s surface it experiences a uniform downward electric field of strength 100 N C–1 and a uniform gravitational field of strength 9.8 N kg–1. Draw a free-body force diagram for the speck of dust. Label the forces clearly. ...
... one electron. Near to the Earth’s surface it experiences a uniform downward electric field of strength 100 N C–1 and a uniform gravitational field of strength 9.8 N kg–1. Draw a free-body force diagram for the speck of dust. Label the forces clearly. ...
Magnetic Fields and Forces
... The field is much stronger inside the loop than at points outside it. The direction of the magnetic field at the center of the circular loop can be obtained by applying the same right-hand rule as for a straight wire: Imagine grasping the wire in your right hand with your thumb in the direction of t ...
... The field is much stronger inside the loop than at points outside it. The direction of the magnetic field at the center of the circular loop can be obtained by applying the same right-hand rule as for a straight wire: Imagine grasping the wire in your right hand with your thumb in the direction of t ...
magnetic field
... the particle just as it enters region 1? 1) up 2) down 3) left Particle is moving straight upwards then veers to the 4) right right. 5) into page 6) out of page ...
... the particle just as it enters region 1? 1) up 2) down 3) left Particle is moving straight upwards then veers to the 4) right right. 5) into page 6) out of page ...
Review for Chapter 7 - the law of electric charges:
... - Coulomb’s law: the force “from a distance” between two charges is proportional to the product of the charges of the two and inversely proportional to the square of the distance between † particles ...
... - Coulomb’s law: the force “from a distance” between two charges is proportional to the product of the charges of the two and inversely proportional to the square of the distance between † particles ...
Magnetic Field due to a Current
... • At the instant the switch is closed, the galvanometer (ammeter) needle deflects in one direction and then returns to zero • When the switch is opened, the galvanometer needle deflects in the opposite direction and then returns to zero • The galvanometer reads zero when there is a steady current or ...
... • At the instant the switch is closed, the galvanometer (ammeter) needle deflects in one direction and then returns to zero • When the switch is opened, the galvanometer needle deflects in the opposite direction and then returns to zero • The galvanometer reads zero when there is a steady current or ...
Lecture 26
... What is the trajectory for this particle? Positive Charge, Constant Velocity Right? Curves Around, now Velocity is Down Force Points? ...
... What is the trajectory for this particle? Positive Charge, Constant Velocity Right? Curves Around, now Velocity is Down Force Points? ...