Grading Summary: Question 1: 80 points. Question 2: 20 points. Total: 100 points

Similar documents
Grading Summary: Questions 1: 22 points. Question 2: 12 points. Question 3: 12 points. Question 4: 18 points. Question 5: 36 points.

Due Friday, April 21 st IN CLASS. Grading Summary: Questions 1: 15 points. Question 2: 12 points. Question 3: 45 points. Question 4: 12 points

Due Friday, April 14 th IN CLASS. Grading Summary: Question 11: 12 points. Question 12: 26 points. Question 13: 12 Points.

MSIP Proposal Milks Period 4

Mapping the Surface of Mars Prelab. 1. Explain in your own words what you think a "geologic history" for a planet or moon is?

MAPPING MARS TEACHER PAGE

IN CLASS. Grading Summary: Question 1: 22 points. Question 2: 16 points. Question 3: 16 points. Question 4: 30 points. Question 5: 16 points

MARS PUBLIC MAPPING PROJECT (MP)2

Initial Observations and Strategies

CHANNELS ON MARS. KWL Prior Knowledge/Engagement Activity

Name: Lab Instructor: Lab Section: GEO104: Planetary Geology LAB 10: MARS GEOLOGIC MAPPING

Highs and Lows Floods and Flows

Question. Which volcano on the Tharsis region of Mars is the youngest?

Mars for Earthlings. Purpose: Observe and rank potential Earth analogs for Mars planetary study.

ESCI 121 Physical Geology

Welcome to Class 12: Mars Geology & History. Remember: sit only in the first 10 rows of the room

Lesson 2 The Inner Planets

Mars for Earthlings. Purpose: Recognize the purpose and need for understanding the scale and context of various remote sensing imaging techniques.

The Main Points. The View from the Surface. Geology of Mars. Lecture #20: Reading:

I m p a c t C r a t e r s o n M a r s

Activity #1 - Getting Started in Mars Exploration

Highs and Lows, Floods and Flows PLANETARY MAPPING

MAPPING THE SURFACE OF MARS

2) Elucidate a weakness of two of the lines of evidence you listed in the previous question.

GEOLOGY ON MARS. Unit 1 - Chapter 3-1. Analyzing New Evidence

Signature: Name: Banner ID#:

Ronald Wilhelm & Jennifer Wilhelm, University of Kentucky Ages on Mars. Martian Surface Age Exploration

Problem Set 3: Crater Counting

The Inner Planets. Chapter 3 Lesson 1. Pages Workbook pages 51-52

Type of Exercise: In-Class Activity or Laboratory Exercise.

Cacapon Institute s Potomac Highlands Watershed School High School Lesson Plan for the Real-Time Data

Lab #8. The Moons of the Outer Planets

ACTIVITY 6 Using Spectra to Search for an Earth-like Planet

Brookhaven Academy. 8 th Grade Earth Science Final Report

Unit 3 Lesson 4 The Terrestrial Planets. Copyright Houghton Mifflin Harcourt Publishing Company

The information you need will be on the internet. Please label your data with the link you used, in case we need to look at the data again.

1.2: Observing the Surfaces of Mars and Earth

Assignment 2. Due March 4, 2019

Chapter 17: Mercury, Venus and Mars

Scale: Mars is 6,787 km in diameter. Image 1. What is the feature across the middle? What do you think the circles on the left side are?

The CSC Interface to Sky in Google Earth

page - Lab 13 - Introduction to the Geology of the Terrestrial Planets

SOLAR SYSTEM. planet feature cards

Mars. Mars is the fourth planet from the Sun and the outermost of the four terrestrial worlds in the Solar System. It lies outside Earth s orbit.

Assignment 4. Due TBD

Lesson Plan 2 - Middle and High School Land Use and Land Cover Introduction. Understanding Land Use and Land Cover using Google Earth

Changes in Seasonal Albedo with Land Cover Class

Elephant Rocks State Park (Missouri) Virtual Trip

Moon 101. Bellaire High School Team: Rachel Fisher, Clint Wu, Omkar Joshi

QUESTION IMPORTANCE. It is important to find ice if the idea of humans on Mars would ever become a possibility.

Remote Sensing/Reflectance Spectrometer

EOS 102: Dynamic Oceans Exercise 1: Navigating Planet Earth

Date: Summer Stem Section:

Red Planet Mars. Chapter Thirteen

Mars ( ) The Sun and Planets Lecture Notes 6. Spring Semester 2018 Prof Dr Ravit Helled

Investigation 3: Plate Tectonics

EXERCISE 2 (16 POINTS): LUNAR EVOLUTION & APOLLO EXPLORATION

Our World in Space [6th grade]

Strange New Planet. Time Budget: 1 hour

Are There Plate Tectonics on Mars? 5 th Grade Class of 2013 John Read Middle School Redding, CT 06896

Student Exploration: Hurricane Motion

Examining the Terrestrial Planets (Chapter 20)

6. The lithosphere is

A medium-sized star. The hottest object found in our solar system.

15 Surface Water Flow Features on Mars

Geologic Features of Mars

Key Questions: Where are Alaska s volcanoes? How many volcanoes are found in Alaska?

The Latest from Mars: Recent Results and the Next Decade of Exploration

MARS STUDENT IMAGING PROJECT FINAL REPORT ASU MARS EDUCATION PROGRAM Waubonsie Valley High School Period School Year

What do we know about Mars? Lesson Review

Introduction. Background

What are terrestrial planets like on the inside? Chapter 9 Planetary Geology: Earth and the Other Terrestrial Worlds. Seismic Waves.

Name Date Class. Earth in Space

Exercise 1: Earth s Moon

Quiz 3 is available for pickup in front

Session 3. Journey to the Earth s Interior

Exploring Mars in Three Dimensions:

EOSC 110 Reading Week Activity, February Visible Geology: Building structural geology skills by exploring 3D models online

CHEMISTRY SEMESTER ONE

Google Mars: Wind Processes

Welcome to Class 13: Is (or was) Life on Mars? Remember: sit only in the first 10 rows of the room

Visit us at...

Introduction After reviewing the classification of continental margins (not plate margins) in your textbook, answer the following questions:

What You Already Know

Contour Line Overlays in Google Earth

PLANETARY TEMPERATURES

Planet 2. Planet 1 Gas Giant. Planet 3. Earth

My Map Activity MINNESOTA SOCIAL STUDIES STANDARDS & BENCHMARKS

EXPLORING THE GEOLOGY OF SEVERAL WORLDS FROM SPACE

ESSENTIAL QUESTION How can we use the Mars Map and photographs of Mars to learn about the geologic history of the planet?

Mars Exploration Script

Distance From the Sun

Student Guide to Moon 101

MARS INSIDE AND OUT.

Infinity Express. Kendall Planetarium. Planetarium Show Teacher s Guide PROGRAM OUTLINE

Illustrate It! You will need to set out colored pencil and markers at this station.

Experiment 10. Zeeman Effect. Introduction. Zeeman Effect Physics 244

Sea Ice and Satellites

Earth. Physical Properties of Earth kg. Average Density g/cm 2. Surface Gravity 9.8 m/s o C to 50 o C. Surface Temperature

Lecture Outlines. Chapter 10. Astronomy Today 8th Edition Chaisson/McMillan Pearson Education, Inc.

Transcription:

HOMEWORK #5 Mars & Mercury Due Friday, May 26 th IN CLASS Answers to the questions must be given in complete sentences (except where indicated), using correct grammar and spelling. Please be as brief and to-the-point as possible (more is not necessarily better). DO NOT COPY DIRECTLY FROM WEBSITES. Homework assignments must be legible. Handwritten or typed responses are permitted. Make sure that your assignment is stapled! Grading Summary: Question 1: 80 points Question 2: 20 points Total: 100 points Note: For this assignment, please use your notes, the class textbook, and the website indicated in the directions as references to complete the questions. No additional online resources are necessary.

1. Google Mars The Google guys recently teamed up with NASA researchers at Arizona State University to create one of the most detailed online scientific map and image archive ever made of Mars Google Mars. For this question, you will explore the data and images available on Google Mars to answer the questions below. To begin, navigate to the following website: http://www.google.com/mars/ Note: If Internet Explorer does not properly load the page, try an alternative web browser (ie., Netscape) After the page finishes loading, you see a colorful image of Mars s topography, similar to the screen snapshot below (without the numbers). Depending on the size of your computer screen, you may need to use the zoom in/out buttons on the left side of the website to view Mars in its entirety. Note that you can also slide the topography image around on your screen by simply clicking and dragging your mouse over the image. 2 3 1 5 4 6 7 1.1 Spacecraft Locations

Click on the link at the top of the webpage named Spacecraft. A column on the left side of the website should appear, providing a list of Martian spacecraft. Clicking on any of these links will produce a pop-up balloon with more information about the spacecraft and mission. a) Using the spacecraft links on Google Mars, along with the map from the previous page, match the numbered map locations (1-7) with the spacecraft landing sites: Map Label Spacecraft Name 1 2 3 4 5 6 7 b) When were each of these spacecraft launched and how long did each operate? Map Label Year of Launch Length of operation 1 2 3 4 5 6 7

1.2 Martian Surface Features Next click on the link at the top of the webpage named Stories. A new column on the left side of the website should appear now providing a list of surface features on Mars and related articles. Clicking on any of these links will produce a pop-up balloon with more information about the feature and a link to an associated article about the feature. DO NOT COPY DIRECTLY FROM WEBSITES. a) Martian Outflow Channel Click on the link named Outflow Channel in Kasei Valles. Then click on the link to the article in the pop-up balloon. Read the article and answer the questions below. 1. Of the spacecraft used to answer Q1.1, which landed closest to the location of this outflow channel? 2. The instrument that acquired the images provided in the article is named THEMIS (Thermal Emission Imaging System). On which spacecraft is THEMIS presently operating? 3. What do the colors in the THEMIS-produced images represent? 4. How do scientists think the outflow channel in Kasei Valles was formed? What substance is thought to be responsible for this? 5. According to the article, which direction did water flow through the channel? 6. When did the crater at the top of the image form? Before or after the channel was carved? Why?

b) Martian Lava Channels Return to the main page, click on Stories again, and then click on the link named Lava Channels on Ascraeus Mons. Then click on the link to the article in the pop-up balloon. Read the article and answer the questions below: 1. What is the suspected source of the channels seen in this image? 2. On what large-scale volcanic region (on Mars) are these channels located? 3. What type of surface materials (ie., rocks, dust, etc.) do the different colors of the image represent? Blue: Yellow: Reddish-orange: c) Martian Dunes Return to the main page, click on Stories again, and then click on the link named Dunes in Rabe Crater. Then click on the link to the article in the pop-up balloon. Read the article and answer the questions below: 1. The image in this article features a small part of Rabe Crater. According to the map on the main page, in which geographic region is Rabe Crater located: northern lowlands or southern highlands? 2. What is the name of the giant impact feature located to the east of Rabe Crater? 3. According to the article, what geologic feature is described by a washboardtexture that covers much of the crater floor? 4. Winds play a major role in modifying the crater floor. According to the article, what is the direction of the winds?

2. Mercury 2.1 Why do we think Mercury has a very large iron core? 2.2 Describe briefly (1-2 sentences) the unique relationship between Mercury s orbit and spin. 2.3 What Earth-based technique was used to measure this rotation of Mercury? 2.4 What is the name of the only spacecraft to have ever visited Mercury? List two types of data that this spacecraft acquired of Mercury. 2.5 What is the name of the spacecraft en route to Mercury? When should it arrive? List two types of data that it will collect.