Lecture 9. Variable Star Stuff. March :00 PM BMPS 1420

Similar documents
Lecture 8. October 25, 2017 Lab 5

10/17/2012. Observing the Sky. Lecture 8. Chapter 2 Opener

These notes may contain copyrighted material! They are for your own use only during this course.

Lecture 10. Advanced Variable Star Stuff. March :00 PM BMPS 1420

Coordinates on the Sphere

ASTRONOMICAL COORDINATE SYSTEMS CELESTIAL SPHERE

Time, coordinates and how the Sun and Moon move in the sky

Introduction To Modern Astronomy I: Solar System

MAY 10, Beginning of Class: We looked into the future of the Glendale sky using Stellarium

The Earth Orbits the Sun Student Question Sheet (Advanced)

A Sky Full of Stars - II.

PHSC 1053: Astronomy Time and Coordinates

Welcome to Astronomy 402/602

Stellar distances and velocities. ASTR320 Wednesday January 24, 2018

Astronomy 122 TR Chemistry Annex. Outline. Question. The Data Look up at the night sky. What are the Data?

Remember that for one of your observing projects you can go to a star party (stargazing). This is available at the Lawrence Hall of Science every 1st

These notes may contain copyrighted material! They are for your own use only during this course.

ASTR 1010 Astronomy of the Solar System. Course Info. Course Info. Fall 2006 Mon/Wed/Fri 11:00-11:50AM 430 Aderhold Learning Center

Equatorial Telescope Mounting

27.1: Characteristics of Stars

Observing Instructions XCOV30 Oct/Nov

Sky at Night. The Moore Winter Marathon - Observing Form. (Naked Eye/Binocular, items 1-25)

Astronomical Techniques I

Cartesian Coordinates Need two dimensional system 2 number lines perpendicular to each other X-axis is horizontal Y-axis is vertical Position relative

Observational Astronomy (PHYS-380) Fall 2008 Course Information

The Earth Orbits the Sun Answer Sheet (Introductory)

Astronomy 1 Fall 2016

Astron 104 Laboratory #6 The Speed of Light and the Moons of Jupiter

Astronomy 1 Winter 2011

PHYS/ASTR 2060 Popular Observational Astronomy(3) Syllabus

The Ever-Changing Sky. By Megan McGibney

Sky at Night. The Moore Winter Marathon - Observing Form. (Telescopic Targets, items 26-50)

What is an eclipse? By NASA, adapted by Newsela staff on Word Count 786 Level 870L

Answer Key for Exam C

Answer Key for Exam B

Geometry of Earth Sun System

Time and Diurnal Motion. 1a. The Earth Is Flat. 1c. Aristotle ( BC) 1b. The Earth Is Round. Time and Diurnal Motion

Stars, Galaxies & Universe Announcements. Stars, Galaxies & Universe Lecture #3. Reading Quiz questions. Phases of the Moon & Eclipses

Astronomy 1 Fall 2016

If Earth had no tilt, what else would happen?

Observational Astronomy Introduction

Midterm Observing Project: RR Lyrae, Rapidly Pulsating Stars

Astronomy. Today: Eclipses and the Motion of the Moon. First homework on WebAssign is due Thursday at 11:00pm

Modern Navigation. Thomas Herring

PHAS 1511: Foundations of Astronomy

Coordinate Systems for Astronomy or: How to get your telescope to observe the right object

CELESTIAL COORDINATES

DEPARTMENT of Astronomy and Physics

Observational Astronomy - Lecture 5 The Motion of the Earth and Moon Time, Precession, Eclipses, Tides

How to Measure and Record Light Spectrograph. The Photographic plate now obsolete Turbulence

Time and Diurnal Motion

Chapter S1 Celestial Timekeeping and Navigation. How do we define the day, month, year, and planetary time periods?

Wednesday Jan. 22. Syllabus and class notes are at: go to courses, AST301 Introduction to Astronomy Lacy

Observational Astronomy

Uranus, Neptune, and Pluto. Outer Worlds 4/19/07

Astronomy. Unit 2. The Moon

The Ever-Changing Sky

LETTER TO PARENTS MONDAY. The Moon was oval. It was high in the sky. There were lots of stars. One star in the west was brighter than the rest.

Seasons & Constellations

PART 3 Galaxies. Gas, Stars and stellar motion in the Milky Way

A. The moon B. The sun C. Jupiter D. Earth A. 1 B. 2 C. 3 D. 4. Sky Science Unit Review Konrad. Here is a selection of PAT style questions.

BENCHMARK SC.E.1.2.1

Time and Diurnal Motion

Questions for Today s Class?

Directions: Read each slide then fill in the blanks.

Open Clusters in Orion

AS102 -The Astronomical Universe. The boring details. AS102 - Major Topics. Day Labs - Rooms B4 & 606. Where are we (earth, sun) in the universe?

Goals of this course. Welcome to Stars, Galaxies & the Universe. Grading for Stars, Galaxies & Universe. Other things you need to know: Course Website

Announcements. Topics To Be Covered in this Lecture

The Celestial Sphere. Chapter 1. Constellations. Models and Science. Constellations. Diurnal vs. Annular Motion 9/16/2010

Lecture 4. Outline. First Exam. First Exam. ASTR 111 Section 002

D. most intense and of longest duration C. D.

The. Astronomy is full of cycles. Like the day, the month, & the year In this section we will try to understand these cycles.

Page Eclipses INTERACTIVE. Lunar phases

You, too, can make useful and beautiful astronomical images at Mees: Lesson 3

Dive into Saturn.

Practice Questions: Seasons #1

29:50 Stars, Galaxies, and the Universe Final Exam December 13, 2010 Form A

Knowing the Heavens. Goals: Constellations in the Sky

Final Announcements. Lecture25 Telescopes. The Bending of Light. Parts of the Human Eye. Reading: Chapter 7. Turn in the homework#6 NOW.

PHYSICS 107. Lecture 4 Ancient Astronomy

DeAnza College Winter Second Midterm Exam Section 04 MAKE ALL MARKS DARK AND COMPLETE.

Knowing the Heavens. Goals: Constellations in the Sky

Midterm Study Guide Astronomy 122

Seasons Motions of the Sun

The Challenge of AZ Cas-Part 1. John Menke Barnesville, MD Abstract

Photoelectric Photometry of the Pleiades Student Manual

Time and Diurnal Motion. 1a. The Earth Is Flat. 1c. Aristotle ( BC) 1b. The Earth Is Round. Time and Diurnal Motion

It is a very human trait to wonder where we are in this universe. Usually, the only hint of the vastness of the universe comes at night.

ASTRONOMY 114 Lecture Okay. We re gonna be continuing our discussion of the Milky Way Galaxy and the

New Eclipsing Variable Star with Delta Scuti Component

An eclipse is when light from a moon or sun gets blocked. People can see two kinds of eclipses from Earth.

Reading Reminders. Your Questions via JiTT2

What is the difference between a galaxy and a solar system?

Astronomy 195: Observational Astronomy

What is an eclipse? Lunar Eclipses. By NASA, adapted by Newsela staff on Word Count 866 Level 940L

AS 203 Principles of Astronomy 2 Introduction to Stellar and Galactic Astronomy Syllabus Spring 2012

Earth is rotating on its own axis

Introduction To Modern Astronomy II

Astronomy 122 Section 1 TR Digital Computer Laboratory. Outline. Celestial Sphere. Motions in the Sky

Transcription:

Lecture 9 Variable Star Stuff March 11 2003 8:00 PM BMPS 1420

This week's topics CCD Review Differential Photometry Julian Date Heliocentric Corrected Julian Date How to get to the MSU telescope

CCD Review What we need Gain Why we need it Bias Dark Flat

CCD Review What we need Gain Bias Why we need it Converts charge to amount of light Dark Flat

CCD Review What we need Gain Bias Why we need it Converts charge to amount of light Zero point for CCD Dark Flat

CCD Review What we need Gain Bias Dark Flat Why we need it Converts charge to amount of light Zero point for CCD Remove thermal fluctuations

CCD Review What we need Gain Bias Dark Flat Why we need it Converts charge to amount of light Zero point for CCD Remove thermal fluctuations Re-Normalize CCD response

Differential Photometry We would like absolute magnitudes. Local conditions prohibit this. Since the star varies over time, we could simply compare it to another star nearby. AN Lyn (δ scuti variable) Why does this work? ~14 '

Differential Photometry We would like absolute magnitudes. Local conditions prohibit this. Since the star varies over time, we could simply compare it to another star nearby. AN Lyn (δ scuti variable) Why does this work? Any variations due to clouds or other atmospheric conditions should affect both stars equally. ~14 '

Differential Photometry We would like absolute magnitudes. Local conditions prohibit this. Since the star varies over time, we could simply compare it to another star nearby. AN Lyn (δ scuti variable) Why does this work? Any variations due to clouds or other atmospheric conditions should affect both stars equally. ~14 '

Differential Photometry AN Lyn - C1 = m1 AN Lyn - C2 = m2 C1 - C2 = m3 (constant?) AN Lyn (δ scuti variable) We then want to plot: m1 vs time m2 vs time m3 vs time In the end, we will make some guess of the period and plot m1 vs period. ~14 '

Julian Date Date system that uses integer days from a given starting point, rather than days, months, and years. Developed in 1583 by J.J. Scaliger The zero point is noon, 4713 BC This happened to be when several older calender systems converged, and there was no recorded history earlier than this point at the time. (This means no negative dates...)

Julian Date (cont.) Formula for calculating is a bit complex, but here is the simplified version (valid from 1901-2099): JD = 367Y - INT(7 (Y + INT( (M + 9) / 12) ) / 4 + INT(275M / 9) + D + 1721013.5 + UT / 24 Y = year M = month of year D = day of month UT = universal time (hours, minutes, seconds elapsed since midnight GMT)

Julian Date (cont.) Since it starts at noon, observations typically run over one "day". This system is very convenient for Astronomy. There are many JD calculators on the web Feed in "real date and time" get back JD: June 9th, 2001 Noon GMT JD = 2452070

Heliocentric Correction Need to correct for light travel time based on the position of Earth in its orbit around the Sun. 8 minutes (Assumes that the Sun is "stationary").

Heliocentric Correction (cont.) Need to know Julian Date of observation as well as RA and DEC of object. This calculation is a bit more complex. We will use a program to do it, so you don't need to worry about the details right now.

Phone 355-SKYS MSU Observatory

Observing Projects AN Lyn Variable star RA 9 14 28.0 DEC +42 45 42 Produce a light curve Orion Nebula Emission Nebula Multi-color imaging We will be observing these on ANY upcoming clear night. Keep and eye on your email and the web site. We know that you can't make it some days and that is fine. We would like you to make it to at least one observing session for each of the two projects.