PHY1020 BASIC CONCEPTS IN PHYSICS I



Similar documents
Online Courses for High School Students

Einstein s theory of relativity

Where is Fundamental Physics Heading? Nathan Seiberg IAS Apr. 30, 2014

Work and Energy. Work = Force Distance. Work increases the energy of an object. Energy can be converted back to work.

Curriculum Overview IB Physics SL YEAR 1 JUNIOR TERM I (2011)

Physics 9e/Cutnell. correlated to the. College Board AP Physics 1 Course Objectives

Does Quantum Mechanics Make Sense? Size

Unit 2 Lesson 1 Introduction to Energy. Copyright Houghton Mifflin Harcourt Publishing Company

Boardworks AS Physics

1. The Kinetic Theory of Matter states that all matter is composed of atoms and molecules that are in a constant state of constant random motion

This Performance Standards include four major components. They are

Background Biology and Biochemistry Notes A

COMPETENCY GOAL 1: The learner will develop abilities necessary to do and understand scientific inquiry.

The Structure of Water Introductory Lesson

Atomic Structure Ron Robertson

Bergen Community College School of Mathematics, Science and Technology Department of Physical Sciences. Course Syllabus PHY 291 Physics III

Chapter 1: Chemistry: Measurements and Methods

The University of Texas at Austin. Gravity and Orbits

The Physics Degree. Graduate Skills Base and the Core of Physics

California Subject Examinations for Teachers

Transcript 22 - Universe

Remodelling the Big Bang

1 Introduction The Scientific Method (1 of 20) 1 Introduction Observations and Measurements Qualitative, Quantitative, Inferences (2 of 20)

TIME, SYMMETRY OF. Although everyday experience leads us to believe that time "flows" in one direction, the

PEDAGOGY: THE BUBBLE ANALOGY AND THE DIFFERENCE BETWEEN GRAVITATIONAL FORCES AND ROCKET THRUST IN SPATIAL FLOW THEORIES OF GRAVITY *

Physics 221 Classical Physics II Lab Gustavus Adolphus College Spring 2007

Astronomy 110 Homework #04 Assigned: 02/06/2007 Due: 02/13/2007. Name:

Unamended Quantum Mechanics Rigorously Implies Awareness Is Not Based in the Physical Brain

Chapter 6. Work and Energy

Einstein s Theory of Special Relativity Made Relatively Simple!

STATICS. Introduction VECTOR MECHANICS FOR ENGINEERS: Eighth Edition CHAPTER. Ferdinand P. Beer E. Russell Johnston, Jr.

What Do You Think? For You To Do GOALS

PHYSICS FOUNDATIONS SOCIETY THE DYNAMIC UNIVERSE TOWARD A UNIFIED PICTURE OF PHYSICAL REALITY TUOMO SUNTOLA

Energy and Energy Transformations Test Review

The content is based on the National Science Teachers Association (NSTA) standards and is aligned with state standards.

Lecture 4: Newton s Laws

European Benchmark for Physics Bachelor Degree

PS-6.2 Explain the factors that determine potential and kinetic energy and the transformation of one to the other.

REALIZING EINSTEIN S DREAM Exploring Our Mysterious Universe

Elements of Physics Motion, Force, and Gravity Teacher s Guide

TEMPERATURE DEPENDENCE OF GRAVITATIONAL FORCE: EXPERIMENTS, ASTROPHYSICS, PERSPECTIVES. A.L. Dmitriev

A Modest View of Bell s Theorem. Steve Boughn, Princeton University and Haverford College

PHYS 1624 University Physics I. PHYS 2644 University Physics II

Physical Principle of Formation and Essence of Radio Waves

Advanced Topics in Physics: Special Relativity Course Syllabus

THE IDEAL GAS LAW AND KINETIC THEORY

Name: Date: Period: Gravity Study Guide

The Phenomenon of Photoelectric Emission:

MASTER OF SCIENCE IN PHYSICS MASTER OF SCIENCES IN PHYSICS (MS PHYS) (LIST OF COURSES BY SEMESTER, THESIS OPTION)

Journal of Theoretics Journal Home Page

E/M Experiment: Electrons in a Magnetic Field.

PROPOSED SCIENCE OFFERINGS FOR

Chemistry 13: States of Matter

State Newton's second law of motion for a particle, defining carefully each term used.

DISTANCE DEGREE PROGRAM CURRICULUM NOTE:

Entropy and the Kinetic Theory: the Molecular Picture

Grade Level Expectations for the Sunshine State Standards

SIR ISAAC NEWTON ( )

1.2 Investigations and Experiments

SYLLABUS FORM WESTCHESTER COMMUNITY COLLEGE Valhalla, NY lo595. l. Course #: PHYSC NAME OF ORIGINATOR /REVISOR: Dr.

Atomic Structure: Chapter Problems

How To Understand General Relativity

What Is Energy? Energy and Work: Working Together. 124 Chapter 5 Energy and Energy Resources

TEACHER BACKGROUND INFORMATION THERMAL ENERGY

Newton s Laws of Motion

ARIZONA Science Standards High School Chemistry: Matter and Change 2005

Welcome to Physics 101 Basic Concepts of Physics. Instructor: Georgina Olivares Based on the book by Paul G. Hewitt:

Time and Causation in Gödel s Universe.

1. Large ships are often helped into port by using two tug boats one either side of the ship. April 5, 1989 (Anchorage Daily News / Erik Hill)

Gravitation and Newton s Synthesis

A. Kinetic Molecular Theory (KMT) = the idea that particles of matter are always in motion and that this motion has consequences.

The Main Point. Lecture #34: Solar System Origin II. Chemical Condensation ( Lewis ) Model. How did the solar system form? Reading: Chapter 8.

Thermodynamics. Thermodynamics 1

Level 3 Achievement Scale

ELEMENTS OF PHYSICS MOTION, FORCE, AND GRAVITY

The Special Theory of Relativity

Superposition & the paradoxes of quantum mechanics

Master of Arts in Science Education for Physics Teachers Grade 5 12

Lecture 7 Formation of the Solar System. Nebular Theory. Origin of the Solar System. Origin of the Solar System. The Solar Nebula

State Newton's second law of motion for a particle, defining carefully each term used.

Practice TEST 2. Explain your reasoning

North Dakota Advanced Placement (AP) Course Codes. Computer Science Education Course Code Advanced Placement Computer Science A

DO WE REALLY UNDERSTAND QUANTUM MECHANICS?

5. The Nature of Light. Does Light Travel Infinitely Fast? EMR Travels At Finite Speed. EMR: Electric & Magnetic Waves

Newton s Laws of Motion

Instructors Guide: Atoms and Their Isotopes

Atomic Theory Part 1

Prerequisite: High School Chemistry.

Chapter 7 Newton s Laws of Motion

Appendix A: Science Practices for AP Physics 1 and 2

Class 2 Solar System Characteristics Formation Exosolar Planets

arxiv:quant-ph/ v1 22 Apr 2004

The rate of change of velocity with respect to time. The average rate of change of distance/displacement with respect to time.

DO PHYSICS ONLINE FROM QUANTA TO QUARKS QUANTUM (WAVE) MECHANICS

MILLERSVILLE UNIVERSITY. PHYS 231, Physics I with Calculus Fall Semester 2009

The unifying field Theory

Particle control in a quantum world

Transcription:

PHY1020 BASIC CONCEPTS IN PHYSICS I Jackson Levi Said 14 lectures/tutorials/past paper session Project on one of the interesting fields in physics (30%) Exam in January/February (70%) 1 The Course

RECOMMENDED READING University physics, Harris Benson The Feynman Lectures in Physics, Vol. I, Richard Feynman - V P Colletta, College Physics, Mosby - H Benson, University Physics, John Wiley & Sons - R Feynman, The Feynman Lectures in Physics Vol. 1, Addison-Wesley - http://www.phys.virginia.edu/classes/109n/home.html - J Bronowski, The Ascent of Man, Little Brown & Co - S Hawking, A Brief History of Time, Bantam 2 Textbooks should be read..

BASIC CONCEPTS IN PHYSICS I Why Study Physics? - What is Science? - The nature of physical laws Mechanics: - The problem of motion; - Kinematics in 1-D - Kinematics in 2-D - Dynamics - Forces - Energy - Frames of references Thermodynamics and heat: - Temperature and thermometry; Specific heat capacity; - Latent heat; First law of thermodynamics; - Entropy; Second law of thermodynamics; Heat engines 3 Contents, there will be more for part II

SCIENCE 4 What is Science?

The Scientific Method Science is a process not a eureka moment! 5 How is science done?

Physics and All The Rest Chemistry studies the motion of atom and molecules combine and transform through particle exchanges Biology Evolution of a system through dynamical changes in macroscopic structures All science can be studied through physics! 6 Why Study Physics?

Example I Formulation of the question Hypothesis Prediction Test Refinement of the Hypothesis Test new hypothesis and so it continues until the system is understood extremely well 7 How not to kill a basil plant! (in general)

Example II The Earth will be destroyed on 21 st December 2012 by a giant asteroid which cannot be observed until it happens Is this a scientific statement of not? 8 Forming the question

Once More on Question Forming Principles These are extra laws that are necessary to make a prediction but that cannot be tested Example: The energy of a system remains constant throughout a heating process Explanation: To get characteristic constant (ex. specific heat capacity) we have to start off by saying that the system cannot create energy out of nothing Axioms These are the ideas that we can test, once we have all the necessary principles, through the scientific method Example: The particles in a heating experiment move in a random fashion (ex. boiling water) Test: If the container has a uniform distribution of bubbles emerging then this is true 9 What are the elements that go into forming a hypothesis?

10 Occam's Razor

Logical Positivists vs. Falsification Logical positivists Thought that a hypothesis is true if it can be verified (ex. Ayer) Falsification Karl Popper insisted that theories are not verified, they simple stand tests up to certain accuracies Popper produced the grammar that we use today to talk about science! 11 What is the remit of Science?

A Question of Scale 12 Approximate theories are fine to use sometimes

Galilean Relativity Galilean relativity states that all physical laws are the same in all inertial (non-accelerating) frames Is this a physical law (hypothesis) or a principle? What does this say for experiments done on moving vehicles? 13 What will the tennis players see?

Classical (Newtonian) Mechanics Armed with a way of thinking about the way observers measure the properties of objects Newton put together his laws of motion and his theory of gravitation (and Optics, etc..) In this model space and time are absolute meaning that they appear the same (given a coordinate transformation) to everyone (a meter is a meter is a meter) But more on this in the mechanics part of the course 14 Why is Galilean relativity important?

Problems in Absoluteness Consider relativistic systems such as satellites moving very fast in their orbit (GPS) or fast moving particles in superconductivity Einstein asked himself what a light beam would see if it were to cross another light beam? In Newton s theory speed has no physical limit, but experiments have still not given us any way of going faster than light indicating something new to Newton 15 What happens with a little bit of extreme speed?

The Lorentz Relativity Component the feature of nature that says experimental results are independent of the orientation or the boost velocity of the laboratory through space Neil Russell 16 We have to look at things a little differently

Einstein s Relativity Idea The new relativity idea that Einstein proposed had the following two principles at its bedrock: 1. The physical laws are the same in inertial frames preserved from Newton in a sense, but with modifications due to the second principle 2. The speed of light is constant in ever inertial frame this explicitly builds the experimentally significant value into the model 17 What s missing with Newton s theory?

Gravitation Using a patch work of very small volumes of space this idea of Lorentz frames can even be used to build up a model of gravity in which the force of gravity is expressed as the curvature in the gluing of these regions of space 18 What is the modern concept of gravity?

Problems of a Smaller Scale On the very small scale our idea of particles becomes fuzzy in the sense that the outcome of a measurement can be predicted statistically and not absolutely! Classical particle on a spring Quantum particles that are not moving Moving particle in the quantum regime 19 How does the world work on the small scale?

Schrődinger s Cat In the traditional experiment a cat is placed inside of a box with a killing device that depends on a nuclear reaction. The cat is always in a superposition of being both dead and alive, classically we would expect the cat to one either one of these two possibilities Depends on observation to collapse the wave function! 20 Does the outcome of an experiment wait for us?

A Universe made of Waves Consider now empty space, surprisingly we find that due to random fluctuations the minimum point of energy does not turn out to be zero! This means empty space is literally composed of particles flashing into and out of existence is a random but organized fashion! 21 What about the space between matter?

The so-called Wave-Particle Duality Phenomenon Explained with Waves Explained with Particles Reflection Refraction Interference Diffraction Polarization Photoelectric effect 22 Which part of the duality appears where?

Introducing Lorentz Again The problem with quantum mechanics is that is did not undergo the Lorentz relativity revolution, that is it still uses Galilean relativity, Quantum Field Theory attempts to solve this problem by building up the same theory with Lorentz relativity but this is extremely difficult and has many problems to deal with still 23 Quantum Field Theory

Explaining Atoms and particles Particle and atom models can be built up using this idea of quantum field theory to build up an accurate model of the way they work in reality 24 What can this model do?

Particle Physics and The Standard Model + 25 Why do you think this is called Standard?

The Math behind the Standard 26 A little complicated..

Bridging the Extremes Looking back over time the Universe must of started in a very dense primordial plasma of very energetic particles! 27 Cosmology is where both these extremes meet

28 To End at the Beginning

This is the whole of Foundational Physics Keep in mind that this is how we break up physics! 29 The End