Particle Physics Quiz. EPPOG Hands on Particle Physics Masterclasses 2011

Similar documents
Concepts in Theoretical Physics

A Guide to Detectors Particle Physics Masterclass. M. van Dijk

EPPOG International Masterclasses Hands on Particle Physics

Theoretical Particle Physics FYTN04: Oral Exam Questions, version ht15

Searching for the Building Blocks of Matter

Particle Physics. The Standard Model. A New Periodic Table

Physics for the 21 st Century. Unit 1: The Basic Building Blocks of Matter. Bonnie Fleming and Mark Kruse

FCC JGU WBS_v0034.xlsm

Pearson Physics Level 30 Unit VIII Atomic Physics: Chapter 17 Solutions

How To Teach Physics At The Lhc

Calorimetry in particle physics experiments

Build Your Own Universe

Information about the T9 beam line and experimental facilities

PHYSICS WITH LHC EARLY DATA

High Energy Physics. Lecture 4 More kinematics and a picture show of particle collisions

Version 18 October 2008

The Birth of the Universe Newcomer Academy High School Visualization One

Masses in Atomic Units

Big Data Analytics. for the Exploitation of the CERN Accelerator Complex. Antonio Romero Marín

0.33 d down c charm s strange t top b bottom 1 3

hij Teacher Resource Bank GCE Physics A Other Guidance: Particle Physics By J Breithaupt

REALIZING EINSTEIN S DREAM Exploring Our Mysterious Universe

Large Hadron Collider am CERN

The Standard Model and the LHC! in the Higgs Boson Era Juan Rojo!

Introduction to Elementary Particle Physics. Note 01 Page 1 of 8. Natural Units

Data analysis in Par,cle Physics

STRING THEORY: Past, Present, and Future

Measurement of the Mass of the Top Quark in the l+ Jets Channel Using the Matrix Element Method

Weak Interactions: towards the Standard Model of Physics

Relativistic kinematics basic energy, mass and momentum units, Lorents force, track bending, sagitta. First accelerator: cathode ray tube

Testing the In-Memory Column Store for in-database physics analysis. Dr. Maaike Limper

Top-Quark Studies at CMS

Selected Topics in Elementary Particle Physics ( Haupt-Seminar )

Silicon Sensors for CMS Tracker at High-Luminosity Environment - Challenges in particle detection -

variables to investigate Monte Carlo methods of t t production

1) G. Goggi et al. A DIFFUSION CLOUD CHAMBER FOR AN INVESTIGATION OF PHOTOREACTIONS ON 3 He - Nucl. Instr. Meth. 57 (1967) 137

The OPERA Emulsions. Jan Lenkeit. Hamburg Student Seminar, 12 June Institut für Experimentalphysik Forschungsgruppe Neutrinophysik

Tracking systems in HEP:

Launching DORIS II and ARGUS. Herwig Schopper University Hamburg and CERN

Highlights of Recent CMS Results. Dmytro Kovalskyi (UCSB)

Physics 121 Sample Common Exam 3 NOTE: ANSWERS ARE ON PAGE 6. Instructions: 1. In the formula F = qvxb:

Fermilab FERMILAB-THESIS

Objectives 404 CHAPTER 9 RADIATION

Exploring the Subatomic Realm

The Standard Model of Particle Physics - II

Chapter 15 Cosmology: Will the universe end?

1 Introduction. 1 There may, of course, in principle, exist other universes, but they are not accessible to our

The Higgs Boson. Linac08 Victoria BC, Canada CANADA S NATIONAL LABORATORY FOR PARTICLE AND NUCLEAR PHYSICS

Cathode Ray Tube. Introduction. Functional principle

Real Time Tracking with ATLAS Silicon Detectors and its Applications to Beauty Hadron Physics

Delphes, a framework for fast simulation of a general purpose LHC detector

5.1 Evolution of the Atomic Model

Discovery of neutrino oscillations

The unifying field Theory

Periodic Table of Particles/Forces in the Standard Model. Three Generations of Fermions: Pattern of Masses

Cross section, Flux, Luminosity, Scattering Rates

Curriculum for Excellence. Higher Physics. Success Guide

THEORY OF EVERYTHING. Michael Duff INSTANT EXPERT 12

How To Find The Higgs Boson

Jets energy calibration in ATLAS

What is Matter? Matter is anything that has mass. All objects are made of matter. Air, water, a brick, even you are made of matter!

New approaches in user-centric job monitoring on the LHC Computing Grid

Open access to data and analysis tools from the CMS experiment at the LHC

physics 112N magnetic fields and forces

Technical Case Study CERN the European Organization for Nuclear Research

Chapter 1 Units, Physical Quantities, and Vectors

Physics 1104 Midterm 2 Review: Solutions

The Standard Model of Particle Physics. Tom W.B. Kibble Blackett Laboratory, Imperial College London

Magnetism. d. gives the direction of the force on a charge moving in a magnetic field. b. results in negative charges moving. clockwise.

Big Data Needs High Energy Physics especially the LHC. Richard P Mount SLAC National Accelerator Laboratory June 27, 2013

How High Up Is Space?

Big Data, Social Networks, and Human Behavior

OVERVIEW OF PROTON DRIVERS FOR NEUTRINO SUPER BEAMS AND NEUTRINO FACTORIES*

The Universe. The Solar system, Stars and Galaxies

Study of the B D* ℓ ν with the Partial Reconstruction Technique

Recent developments in Electromagnetic Hadron Form Factors

The Elegant Universe Teacher s Guide

Top rediscovery at ATLAS and CMS

Transcription:

Particle Physics Quiz EPPOG Hands on Particle Physics Masterclasses 2011

Work in groups of 2 Rules of the Game 10 multiple-choice questions + 2 master questions (+ 1 extra tiebreaker for final decision, if necessary) ~30 seconds per question Answer sheets 2 sections fill in both hand bottom part to your instructor Winning teams in each institute will receive a prize from CERN But the main aim is to have fun!

Question 1 Our detector shows a signal only in the hadronic calorimeter (no signal in the tracker, electromagnetic calorimeter or muon chambers). Therefore, this signal is most likely 1. pion 2. electron 3. neutron 4. photon

Question 2 How much of our universe is made of matter or energy, which we do not know about? 1. 0.001 % 2. 10 % 3. 45 % 4. 96 %

Question 3 How do we see quarks in a detector? 1. Not at all 2. By their characteristic spiral trajectory 3. Via jets of hadrons they generate 4. As two individual straight tracks in opposite directions

Question 4 The particles carrying the strong force are the 1. photons 2. gluons 3. Z- or W-bosons 4. none of the above

Question 5 Which was the first particle discovered which is still today believed to be elementary, i.e. not made up of further constituents? 1. electron 2. gluon 3. proton 4. photon

Question 6 Approximately how many times do the protons in the LHC fly around the accelerator ring in 1 second? 1. 1 2. 100 3. 10 000 4. 1 000 000

Question 7 Superconducting magnets bend the protons around the LHC ring. What do you think is the temperature of these magnets? 1. Room temperature, 300K 2. Colder than outer space, 1.9K 3. Temperature of outer space, 2.7K 4. 163.2K

Question 8 Which of the following complements makes a wrong statement? The Higgsmechanism 1. explains the production of antimatter 2. explains the masses of particles 3. was invented by the British physicist Peter Higgs 4. applies everywhere in the universe

Question 9 Which of the following technological innovations was invented at CERN (only one)? 1. mobile phone 2. teleporter 3. mp3 format 4. World Wide Web

How many kilometers of the LHC are situated in Switzerland (approximately)? Question 10 1. 3 km 2. 7 km 3. 14 km 4. 27 km

Master Question 1 ATLAS and CMS will together produce 400MB of data every second. If written to CD (700 MB, thickness approx. 1 mm) how high a stack would this be in one year? 1. Stratosphere, 20 000 m 2. Mt. Everest, 8 850 m 3. Sears Tower, 527 m 4. Eiffel Tower, 276 m

Master Question 2 Why do tau and mu leptons decay? 1. Because your physics instructor says so 2. Because there are lighter particles they can decay to 3. Because they interact with the magnetic field of the experiment 4. Because there is so much energy produced in e.g. LEP collisions that they break apart

Quiz Answers

Question 1 Our detector shows a signal only in the hadronic calorimeter (no signal in the tracker, electromagnetic calorimeter or muon chambers). Therefore, this signal is most likely 1. pion 2. electron 3. neutron 4. photon

Question 2 How much of our universe is made of matter or energy, which we do not know about? 1. 0.001 % 2. 10 % 3. 45 % 4. 96 %

Question 3 How do we see quarks in a detector? 1. Not at all 2. By their characteristic spiral trajectory 3. Via jets of hadrons they generate 4. As two individual straight tracks in opposite directions

Question 4 The particles carrying the strong force are the 1. photons 2. gluons 3. Z- or W-bosons 4. None of the above

Question 5 Which was the first particle discovered which is still today believed to be elementary, i.e. not made up of further constituents? 1. electron 2. gluon 3. proton 4. photon

Question 6 Approximately how many times do the protons in the LHC fly around the accelerator ring in 1 second? 1. 1 2. 100 3. 10 000 4. 1 000 000

Question 7 Superconducting magnets bend the protons around the LHC ring. What do you think is the temperature of these magnets? 1. Room temperature, 300K 2. Colder than outer space, 1.9K 3. Temperature of outer space, 2.7K 4. 163.2K

Question 8 Which of the following complements makes a wrong statement? The Higgsmechanism 1. explains the production of antimatter 2. explains the masses of particles 3. was invented by the British physicist Peter Higgs 4. applies everywhere in the universe

Question 9 Which of the following technological innovations was invented at CERN (only one)? 1. mobile phone 2. teleporter 3. mp3 format 4. World Wide Web

Question 10 How many kilometers of the LHC are situated in Switzerland (approximately)? 1. 3 km 2. 7 km 3. 14 km 4. 27 km

Master Question 1 ATLAS and CMS will together produce 400MB of data every second. If written to CD (700 MB, thickness approx. 1 mm) how high a stack would this be in one year? 1. Stratosphere, 20 000 m 2. Mt. Everest, 8 850 m 3. Sears Tower, 527 m 4. Eiffel Tower, 276 m

Master Question 2 Why do tau and mu leptons decay? 1. Because your physics instructor says so 2. Because there are lighter particles they can decay to 3. Because they interact with the magnetic field of the experiment 4. Because there is so much energy produced in e.g. LEP collisions that they break apart

Final Tiebreaker

Final Tiebreaker Question Identify the 4 tracks coming from a heavy Higgs Boson in the following event. 1 point for every right track!

Final Tiebreaker Answer Identify the 4 tracks coming from a heavy Higgs Boson in the following event. 1 point for every right track!