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light1
light1

... atom through the bulk of the material; rather the electrons vibrate for short periods of time and then reemit the energy as a reflected light wave  Metals are opaque- free electrons will vibrate easily and reflects light…. This is why metals are shiny ...
atomic theory - unit a
atomic theory - unit a

... n = 1 is ground state level - this is level closest to nucleus. 3) Electrons can jump from one level to another by absorbing or emitting energy. ...
N - MPS
N - MPS

... Partly ionized, then ion-neutral collisions dominate; fully ionized, then Coulomb collisions between charge carriers (electrons and ions) dominate. ...
3. atomic structure and periodic table
3. atomic structure and periodic table

Student worksheet on..
Student worksheet on..

Early Atomic Models
Early Atomic Models

... he called atoms.  Demitri Mendeleev used this theory when he constructed the first working periodic table. ...
Unit IV: Nature of Matter
Unit IV: Nature of Matter

... he called atoms.  Demitri Mendeleev used this theory when he constructed the first working periodic table. ...
Ionic Bonding
Ionic Bonding

... electronic structures of noble gases like neon or argon which have eight electrons in their outer energy levels (or two in the case of helium). These noble gas structures are thought of as being in some way a "desirable" thing for an atom to have. You may well have been left with the strong impressi ...
Mr. electric`s stunt turned crowds on
Mr. electric`s stunt turned crowds on

Problem Set
Problem Set

Column A
Column A

pdf file - High Point University
pdf file - High Point University

... Choose the Fundamental Principle that can be used to solve this problemConservation of Energy. The system of plates and particle are a closed system. Thus, the change in the total energy of the system is zero. ...
Waves, Photons and Medical Physics
Waves, Photons and Medical Physics

Ideas to Implementation by Ian Wilkinson
Ideas to Implementation by Ian Wilkinson

Human exposure to Electromagnetic Fields
Human exposure to Electromagnetic Fields

marking scheme - The Physics Teacher
marking scheme - The Physics Teacher

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... a) Derive an expression for the average power in LCR series circuit connected to ac supply. Hence define power factor. Show that the average power consumed per cycle in an ac circuit containing an ideal capacitor is zero. b) A series LCR circuit with R = 10 ohm, L = 2H and C = 25 micro Farad is conn ...
Energy Transformation
Energy Transformation

Light Sources and Interaction of Light With Matter
Light Sources and Interaction of Light With Matter

Quiz #5 - Chemistry 108 - Design Thinking in Education
Quiz #5 - Chemistry 108 - Design Thinking in Education

Topic 2 - Sciwebhop.net
Topic 2 - Sciwebhop.net

... (a) too much emphasis on nuclear energy not enough spent on renewable sources ...
“thought experiment” regarding time dilation
“thought experiment” regarding time dilation

... train. If an observer sitting in the position M’ in the train did not possess this velocity, then he would remain permanently at M, and the light rays emitted by the flashes of lightning A and B would reach him simultaneously, i.e. they would meet just where he is situated. Now in reality (considere ...
Atomic Theory - chemmybear.com
Atomic Theory - chemmybear.com

... wavelength, in nanometers, of light that corresponds to this line. (c) In the upper atmosphere, ozone molecules decompose as they absorb ultraviolet (UV) radiation, as shown by the equation below. Ozone serves to block harmful ultraviolet radiation that comes from the Sun. O3(g) UV  O2(g) + O(g) ...
Voltage Notes File
Voltage Notes File

Elements PPT
Elements PPT

< 1 ... 111 112 113 114 115 116 117 118 119 ... 208 >

Photoelectric effect

The photoelectric effect is the observation that many metals emit electrons when light shines upon them. Electrons emitted in this manner can be called photoelectrons. The phenomenon is commonly studied in electronic physics, as well as in fields of chemistry, such as quantum chemistry or electrochemistry.According to classical electromagnetic theory, this effect can be attributed to the transfer of energy from the light to an electron in the metal. From this perspective, an alteration in either the amplitude or wavelength of light would induce changes in the rate of emission of electrons from the metal. Furthermore, according to this theory, a sufficiently dim light would be expected to show a lag time between the initial shining of its light and the subsequent emission of an electron. However, the experimental results did not correlate with either of the two predictions made by this theory.Instead, as it turns out, electrons are only dislodged by the photoelectric effect if light reaches or exceeds a threshold frequency, below which no electrons can be emitted from the metal regardless of the amplitude and temporal length of exposure of light. To make sense of the fact that light can eject electrons even if its intensity is low, Albert Einstein proposed that a beam of light is not a wave propagating through space, but rather a collection of discrete wave packets (photons), each with energy hf. This shed light on Max Planck's previous discovery of the Planck relation (E = hf) linking energy (E) and frequency (f) as arising from quantization of energy. The factor h is known as the Planck constant.In 1887, Heinrich Hertz discovered that electrodes illuminated with ultraviolet light create electric sparks more easily. In 1905 Albert Einstein published a paper that explained experimental data from the photoelectric effect as being the result of light energy being carried in discrete quantized packets. This discovery led to the quantum revolution. In 1914, Robert Millikan's experiment confirmed Einstein's law on photoelectric effect. Einstein was awarded the Nobel Prize in 1921 for ""his discovery of the law of the photoelectric effect"", and Millikan was awarded the Nobel Prize in 1923 for ""his work on the elementary charge of electricity and on the photoelectric effect"".The photoelectric effect requires photons with energies from a few electronvolts to over 1 MeV in elements with a high atomic number. Study of the photoelectric effect led to important steps in understanding the quantum nature of light and electrons and influenced the formation of the concept of wave–particle duality. Other phenomena where light affects the movement of electric charges include the photoconductive effect (also known as photoconductivity or photoresistivity), the photovoltaic effect, and the photoelectrochemical effect.
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