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What holds an atom together?
What holds an atom together?

Knight_ch38
Knight_ch38

Photoelectric Effect and Einstein`s hypothesis
Photoelectric Effect and Einstein`s hypothesis

Photoelectric effect
Photoelectric effect

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Light is an electromagnetic wave. Turn text to image. Illustrate the

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3. The Experimental Basis of Quantum Theory

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Mark scheme for Extension Worksheet – Topic 6, Worksheet 2

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che-20028 QC lecture 1 - Rob Jackson`s Website

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The Photoelectric Effect: Determination of Planck`s Constant
The Photoelectric Effect: Determination of Planck`s Constant

Chem 167 SI - Iowa State University
Chem 167 SI - Iowa State University

... What the heck are these things? The principle quantum number indicates the shell  The second indexes energy differences between orbitals in the same shell (subshells)—also, gives letter ...
Chemistry 201/211 - Department of Chemistry | Oregon State
Chemistry 201/211 - Department of Chemistry | Oregon State

CHAPTER 3: The Experimental Basis of Quantum Theory
CHAPTER 3: The Experimental Basis of Quantum Theory

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Planck`s “quantum of action” from the photoelectric effect (line

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Blackbody Radiation

... frequency oscillators in the cavity. In other words there is too much radiation at small λ. ●He suggested the idea that an oscillating atom can absorb or re-emit energy only in discrete bundles or quanta. ●If the energy of the quanta are proportional to the frequency() then as  becomes large then ...
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SECTION 6 RAY ANALYSIS OF MULTIMODE CIRCULAR …

... If light only consists of waves, how come we can only generate and detect discrete photons? If light consists only of particles, how does a photon passing through one slit know about the other slit being open? ...
The Photoelectric Effect
The Photoelectric Effect

... However, the question “Is light a wave or a particle?” is inappropriate. Sometimes light acts like a wave, and at other times it acts like a particle. Some aspects of the photoelectric effect seemed impossible to reconcile with this wave view of light. For example, the emission of particles from a s ...
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32 The Atom and the Quantum Answers and Solutions for Chapter

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April 3 PHYS 1030 Final Exam - University of Manitoba Physics

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Photomultiplier Tube - La Salle University

... High gain, low noise, high frequency response, and large area of collection A tiny and normally undetectable current becomes a much larger and easily measurable current ...
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CHAPTER 3 Observation of X Rays Röntgen`s X

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Lab 11 - College of San Mateo

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Chem 115 - Waves, Radiation and Spectroscopy (lecture 16) 3/31

... Light can be described by waves and they can have particular energies Light also has particle behavior with quantized amounts of energy Wave-particle duality of light and matter Light has no mass yet they can be thought of as particles. Particles of light are called “photons”. Electrons have mass (s ...
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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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