You have a piano, and you ask for the best piano tuner EVER. You ask her to tune the piano perfectly. She says “No problem, it will only take”... 1.About.

Slides:



Advertisements
Similar presentations
Chapter 31 Light Quanta.
Advertisements

Chapter 28 Reading Quiz Dr. Harold Williams.
When we have two charged particles interacting, there is a difference between potential energy and electric potential. A.True B.False.
Cutnell/Johnson Physics 7th edition
Einstein used Planck’s ideas to try to explain the photoelectric effect. Einstein thought that electrons bound in a metal, are held with different amounts.
The electromagnetic (EM) field serves as a model for particle fields
„There was a time when newspapers said that only twelve men understood the theory of relativity. I do not believe that there ever was such a time... On.
De Broglie Waves, Uncertainty, and Atoms sections 30.5 – 30.7 Physics 1161: Lecture 29.
Q39.1 In order for a proton to have the same momentum as an electron,
Unit 4 – Electrons Exam Review.
Physics 6C Heisenberg Uncertainty Principle Prepared by Vince Zaccone For Campus Learning Assistance Services at UCSB.
Q37.1 As a high-speed spaceship flies past you at half the speed of light, it fires a strobe light. An observer on board the spaceship measures a spherical.
Identical Particles In quantum mechanics two electrons cannot be distinguished from each other students have names and can be ‘tagged’ and hence are distinguishable.
Electromagnetic Radiation and Atomic Structure EMR and Properties of Light Bohr Model of the Atom & Atomic Line Spectra Quantum Theory Quantum Numbers,
The electromagnetic (EM) field serves as a model for particle fields  = charge density, J = current density.
Why are electrons restricted to specific energy levels or quantized? Louis de Broglie – proposed that if waves have particle properties, possible particles.
De Broglie Waves, Uncertainty, and Atoms
Quantum Mechanics Intrinsic Uncertainty Nothing is Impossible Merely Improbable.
Wave Packets Recall that for a wave packet  x  k~1 to localize a wave to some region  x we need a spread of wavenumbers  k de Broglie hypothesis =h/p.
PHYSICS DEPARTMENT. If Δx is uncertainty in position measurement along x-direction and Δp x is uncertainty in momentum in same direction then the product.
Modern Physics lecture 3. Louis de Broglie
Quantum Mechanics Weeks One & Two HTH Senior Physics Andrew Gloag.
What is a Fermi Question?. Fermi Process The technique that allows you to formulate an answer to a problem based upon a series of logical assumptions.
Physics 361 Principles of Modern Physics Lecture 8.
Particles (matter) behave as waves and the Schrödinger Equation 1. Comments on quiz 9.11 and Topics in particles behave as waves:  The (most.
Physics 1C Lecture 28B Compton effect: photons behave like particles when colliding with electrons. Electrons and particles in general can behave like.
Chapter 29 Particles and Waves.
MIDTERM 1 REVIEW. WAVES: Given that yellow light is about 600 nm and blue light is 500 nm, Which has the higher frequency? Higher energy?
11 Confidence Intervals – Introduction A point estimate provides no information about the precision and reliability of estimation. For example, the sample.
Classical ConceptsEquations Newton’s Law Kinetic Energy Momentum Momentum and Energy Speed of light Velocity of a wave Angular Frequency Einstein’s Mass-Energy.
Quantum Mechanics Unit 4 – The Electron. 12/22/2015Free PowerPoint Template from Quantum Mechanics Werner Heisenberg – Father of.
Lecture 13: Heisenberg and Uncertainty. Determinism of Classical Mechanics  Suppose the positions and speeds of all particles in the universe are measured.
Chapter 7: Quantum theory of the atom Chemistry 1061: Principles of Chemistry I Andy Aspaas, Instructor.
Orbitals: What? Why? The Bohr theory of the atom did not account for all the properties of electrons and atoms.
More on waves Announcements: Historical quote:
Modern Physics lecture X. Louis de Broglie
Physics for Scientists and Engineers, 6e
QM2 Concept Test 6.1 Choose all of the following statements that are correct about the free electron gas model. 1)The free electron gas model takes into.
Chapter 5.2 Notes Bernoulli’s Principle. Bernoulli’s Principle says that as the velocity of a fluid (such as air) increases, the pressure in the fluid.
STATION 1 Light and Waves 1.According to Einstein’s view of matter and energy, what is the common link between light and matter? 2.How does diffraction.
Uncertainty Principle. Observation  Observations generally require energy interacting with matter. Light on a rulerLight on a ruler Radar on a carRadar.
Black Holes Quantum Mechanics 1. We’ve seen that masses warp spacetime – the bigger the mass, the more the warping. The same mass can cause more warping.
Physics 102: Lecture 23, Slide 1 De Broglie Waves, Uncertainty, and Atoms Today’s Lecture will include material from textbook sections 27.5, 28.2, 4 Physics.
1 HEINSENBERG’S UNCERTAINTY PRINCIPLE “It is impossible to determine both position and momentum of a particle simultaneously and accurately. The product.
Compton Effect X-Ray Scattering Classical Theory (cont’d): c) The scattered radiation should have the same frequency as the incident radiation d) Because.
SEMICONDUCTOR PHOTONICS LAB., HANYANG UNIV 3.1 Photons Compton Scattering Scattering of an x-ray photon by a free electron in a conductor When the.
Electromagnetic Radiation
Quiz_14 Previous material – Compton scattering, pair production New material – Wave-Particle duality, probability, Uncertainty Principle Physics 274 9/30/2016.
Quantum Mechanics Reference: Concepts of Modern Physics “A. Beiser”
De Broglie Waves, Uncertainty, and Atoms
Chapter 5 Review “Electrons in Atoms”
Physics and the Quantum Mechanical Model
An Assessment: Think Pair Share
Inference About Variables Part IV Review
Heisenberg Uncertainty Principle
General Physics (PHY 2140) Lecture 28 Modern Physics Quantum Physics
Ψ
Concept test 12.1 Suppose at time
Which kind of electromagnetic radiation has the least amount of energy? RADIO WAVES.
1. Which of the following is a false statement?
Schrödinger's/ Modern model of the atom
Particle Wave Duality.
Which kind of electromagnetic radiation has the least amount of energy? RADIO WAVES.
Which kind of electromagnetic radiation has the least amount of energy? RADIO WAVES.
Do Now (3B/4B) Take-out: Be ready to review p. 12 at the bell! Paper
Schrödinger's/ Modern model of the atom
The Wave-Particle Duality
Why do the components of the angular momentum operator not commute among themselves? After all, they do commute with ! Because px, py, and pz don’t.
What’s your nationality? Where are you from?
Answer Key Practice Problems
Presentation transcript:

You have a piano, and you ask for the best piano tuner EVER. You ask her to tune the piano perfectly. She says “No problem, it will only take”... 1.About an hour 2.About a day 3.About a week 4.About a month 5.About forever 30 0 of 250

The speed of a photon in vacuum is known precisely in all circumstances. It follows from the uncertainty principle that nothing can be known about the photon’s postion. 1.True 2.False 3.False, but because the speed is not really known precisely 30 0 of 250

A free electron moves along the x-axis, and has a localized wave function. The uncertainty in its momentum is decreased if: 1.The wave function is made more narrow 2.The wave function is made less narrow 3.Wave function is unchanged, but its energy is increased 4.Wave function is unchanged, but its energy is decreased 5.None of the above 30 0 of 250