PPT-Matter-Waves and Electron Diffraction

Author : karlyn-bohler | Published Date : 2016-03-21

The most incomprehensible thing about the world is that it is comprehensible Albert Einstein Day 18 331 Questions Electron Diffraction Wave packets and uncertainty

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Matter-Waves and Electron Diffraction: Transcript


The most incomprehensible thing about the world is that it is comprehensible Albert Einstein Day 18 331 Questions Electron Diffraction Wave packets and uncertainty Next Week. By the end of the day today, IWBAT…. Analyze characteristics of waves (velocity, frequency, amplitude, wavelength. ).. Do Now:. . Which of the following would be the. best physical demonstration of . Giovanni Luca Cascarano. CNR- Istituto di Cristallografia – Bari - Italy. To solve a crystal structure, i.e. to obtain the atomic coordinates, different methods are available. . We’ll focus our attention on Direct Methods, very popular and effective, able to give in a short time and in automatic way the solution to our problem: to compute the phases lost during the diffraction experiment (the so called . Physics 2415 Lecture 38. Michael Fowler, . UVa. Today’s Topics. Multi-slit interference. The diffraction grating: spectra. Waves and particles, more diffraction. Radio . astronomy. Light Intensity Pattern from Two Slits. Matter as Waves. Matter Waves. Louis de Broglie. 1924 doctoral thesis. Approved by Einstein. 1929 Nobel. Matter Waves. Too small of a wavelength to ever measure. Higher speeds will make shorter wavelengths. The speed would have to be too small to be measured to have a measurable wavelength.. August. . 18. th. , . 201. 5. Carnegie Mellon University, Pittsburgh. MURI Meeting, 2015. Saransh Singh. Marc . De Graef. 2. Outline. Introduction to . Forward Models in Electron . Scattering. Electron . Pg. 459 - 461. Properties of Waves. In order to study the properties of waves, a ripple tank is used. A shallow, glass-bottomed tank on left. ~2cm of water is added. Light from a source above the tank passes through the water and illuminates a screen on the table below. By Cade Grigsby. 1. What can X-ray diffraction tell us?. Structure. Bonds. Length. Type. Arrangement. Geometry of crystal. Picture. Electron density map. Diffraction. Angle. Intensity. 2. From X-Rays to Structure. Wave-Particle Duality. Up until now, when you have met waves and particles, you will have treated them as separate entities. However, you will soon find that particles exhibit wave like behaviour and vice versa! This experiment will illustrate this. . What is . Huygen’s. Principle?. What is . diffraction. ? How does it occur?. What happens to:. the frequency of a wave during diffraction? . The wavelength? . The amplitude?. Through what size opening would you expect to see the most diffraction of a wave?. Particles as waves. Aims. understand . that electron diffraction is evidence for wave-like . behaviour. use . the. de . Broglie. . equation. identify situations in which a wave model is appropriate, and in which a particle model is appropriate, for explaining phenomena involving light and electrons. Derek A. Wann. University of Edinburgh. Workshop on Ultrafast Electron Sources. UCLA. 14. th. December . 2012. . Acknowledgements. Funding:. Stuart . Young. Matthew. Robinson. Paul. Lane. Overview. Introduction to transmission electron microscopy. Tutor: Peter Harris. The aims of this course are:. ● . to . describe the components of the transmission electron microscope (TEM). ● . to explain the origin of contrast in TEM images. Resolution of SEMTransmissionelectronmicroscopy(TEM)isamicroscopytechniquewherebyabeamofelectronsistransmittedthroughanultrathinspecimen,interactingwiththespecimenasitpassesthrough.Animageisformedfrom Michael Fowler, . UVa. Today’s Topics. Multi-slit interference. The diffraction grating: spectra. Waves and particles, more diffraction. Radio astronomy. Light Intensity Pattern from Two Slits. We have two equal-strength rays, phase shifted by.

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