Unit 8 Discussion Unit A: Unit Activity: Investigating the… Unit 8 Discussion Unit A: Unit Activity: Investigating the Cryosphere: Analyzing Ice Cover – Past and PresentProvide a brief summary of your answers to Part A and Part B from Unit A Activity. Discuss the overall changes that the ice caps have undergone over the last 20,000 years. What will be some of the issues that humans and the environment will need to face in the next 1000 years if the present decline in the ice caps continue at their current rate? Find one peer reviewed journal article that pertains to the decline of the ice caps, provide a brief overview of the research, and be sure to document and provide your citation/reference. You have access to the library guide found on the Home page under the “Getting Started” tab. This library guide is specific to Geology, so you should have an easy time finding pertinent articles on all subjects covered in this course. Here is the peer reviewed Journal : https://egcc.ohionet.org/login?url=https://search.ebscohost.com/login.aspx?direct=true&db=edsdoj&AN=edsdoj.525f6e031cd4b84b61532354a21a139&site=eds-live Below is the Unit Activity and answers: The Layered Earth (simulationcurriculum.com) Unit AUnit ActivityInvestigating the Cryosphere: Analyzing Ice Cover – Past and PresentObjective: The purpose of this activity is to analyze how ice cover has changed in the past, and to examine current changes in the world’s ice cover.Materials Required: Everything that you need for this exercise is included in the on-screen components.Time Required: approximately 1 ½ hoursThe Earth is a complex planet that consists of many interrelated natural systems. One of those dynamic natural systems, the cryosphere, includes all of the Earth’s frozen water, including the polar ice caps, glaciers, and snow. The cryosphere is of particular importance to scientists because global changes to the Earth’s ice cover can act as an important indicator of global climate change. In this Unit Activity, you will investigate the role of ice cover in the Earth’s last ice age. You will also examine how ice cover is currently changing.Part A: Ice Cover During North America’s Last Ice AgeSeveral times in the last few million years, the global climate has experienced an average temperature drop of approximately 5° C. Each of these temperature drops was accompanied by significant parts of the Earth being covered by vast ice sheets, in other words, a dramatic increase in the size of the cryosphere. These temperature drops accompanied by increases in continental ice cover are known as ice ages.The last ice age on Earth, known as the Wisconsin Ice Age, started about 114,000 years ago, and ended approximately 10,000 years ago. The maximum extent of ice cover on the North American continent during the most recent ice age occurred approximately 18,000 years ago.Click here to see the extent of the ice sheets covering North America 18,000 years ago. Which North American country was completely covered by ice 18,000 years ago? Canada was completely covered by ice 18,000 years ago.Zoom in on the continental United States and use the measuring tools to estimate what area of the continental United States was covered by ice at this time.How much (in km2) of the continental United States was covered by ice 18,000 years ago?The surface of the continental United States is approximately 8.08 × 106 km2. Use your answer from the previous question to determine what percentage of the surface area of the continental U.S. was covered by ice 18,000 years ago. Approximately 1.89 x 10 ^6 km^2 of the continental United states was covered by ice 18,000 years ago.You will now view the extent of ice cover in North America in 1,000 year increments from 17,000 years ago to 10,000 years ago. Click on each year to see the extent of ice cover in North America:17,000 years ago16,000 years ago15,000 years ago14,000 years ago13,000 years ago12,000 years ago11,000 years ago10,000 years agoWhen did the first part of Canada begin to emerge from the ice cover? -Canada began to emerge from the ice cover about 15,000 years. When did the Great Lakes first start to be uncovered from their ice cover? -Ice started to retreat from the Great Lakes about 14,000 years ago.When were Alaska and the continental U.S. again linked by an ice-free land corridor? -An ice-free land corridor between Alaska and the continental U.S. first appeared about 12,000 years ago.When were the Great Lakes completely free of ice? – The Great Lakes were finally free of their ice cover about 10,000 years ago. Part B: Ice Cover TodayClick here to see a map of ice cover in the world today. Which part of the northern hemisphere has the thickest ice cover? -Greenland has the thickest ice cover.What is the estimated ice thickness (in meters) here? – The estimated thickness here is about 3,000 meters. Which part of the southern hemisphere has the thickest ice cover? – Antarctica has the thickest ice cover.What is the estimated ice thickness (in meters) here? -The estimated thickness here is about 3,500 meters.Many scientists are greatly concerned about the present state of the cryosphere. This is because of a global trend towards decreasing snow and ice cover as a result of climate change. One area of particular concern is in the Himalayas in Asia. Glaciers in the Himalayas act as the source for many of the major rivers in Asia. Scientists are concerned that in the future, drastic social problems may arise as a result of water shortages in Asia. A brief examination of the Gangotri Glacier, the largest glacier in the central Himalayas, reveals why scientists are concerned.Click here to see the Gangotri Glacier.Click here to see how ice has retreated in the Gangotri Glacier since 1780. Use the distance measuring tool to answer the next question. How far did the glacial ice retreat between:1780 and 1935? 1.0 km1935 and 1971? 0.4 km1971 and 2001? 0.7 kmWhat is happening to the rate of glacial retreat in the Gangotri Glacier? -The rate of glacial retreat is clearly increasing. – The rate of glacial retreat is clearly increasing. Earth Science Science Geology GEO 101
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