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(a)
The observations that led Alfred Wegner to develop his hypothesis of continental drift.
(a)
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Answer to Problem 1GST
It was observed that the shorelines of South America and Africa along the Atlantic Ocean showed best fit as if in a jigsaw-puzzle. This led Alfred Wegner to frame the continental drift hypothesis.
Explanation of Solution
The theory of continental drift proposed by a German meteorologist and geophysicist in his book, “The origin of Continents and Oceans” dealt with the concept of mobility of continents.
According to Wegener, Earth consisted of a single huge landmass in the beginning, which he named as the supercontinent “Pangea”. It is in the Mesozoic Era that the continents started drifting and migration northwards.
The similarity existed between the coastlines on the opposite sides of Atlantic Ocean served as an initiation for the theory. Later the fossil distribution, lithology, climatic patterns added to the evidences to prove the theory.
(b)
The reason for the rejection of the continental drift hypothesis by most of the scientific community.
(b)
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Answer to Problem 1GST
The continental drift theory proposed by Wegner faced objection from the other Earth scientists since he was unable to give a proper and satisfying mechanism to explain the movement of the continents and he incorrectly stated that the hard and huge continents could break through the thinner oceanic crust.
Explanation of Solution
According to Alfred Wegner, the continents were altogether a single landmass before (the Pangea) which broke and drifted away from each other gradually to occupy their current geographical positions. Though there were many evidences like the jigsaw-puzzle fit of continents, glacial evidence and fossil evidence to support his theory, it had limitations also for which it was rejected by the scientific community.
Wegner proposed in his theory that the continents drifted gradually as a result of the effect of tides generated on Earth from the gravitational forces of the Moon and Sun. This was not a justifiable and acceptable mechanism to support the movement of continents and thus was very much objected by the other scientists.
Another limitation of Wegner’s theory was that he suggested that the massive and stronger continents were capable of breaking through the thinner oceanic crust. This seemed to be impossible and hence was also rejected by the Earth scientists.
(c)
Whether Wegner followed the basic principles of scientific inquiry.
(c)
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Answer to Problem 1GST
It’s true that Wegner followed the basic principles of scientific inquiry and he had evidences also in support of his proposed theory.
Explanation of Solution
According to Wegener, Earth consisted of a single huge landmass in the beginning which he named as the supercontinent “Pangea”. It is in the Mesozoic Era that the continents started drifting and migration northwards.
The similarity existed between the coastlines on the opposite sides of Atlantic Ocean served as an initiation for the theory. Later various other evidences were brought forward to strengthen the theory. One such evidence is the Mesosaurus fossils found from South America and Africa. Had there been no connection between the South America and Africa during the period of life of the Mesosaurus and also that the organism was capable of journeying through the vast South Atlantic, then their fossils would have been found in a number of landmasses.
Wegener offered ancient climates as one of the evidences for continental drift theory. He suspected that the paleoclimate might support the idea of continental drift theory. By this study, they observed that most of the Southern portion was covered by ice sheets around 300 million years ago whereas there occurred large tropical swamps in several locations of Northern Hemisphere.
According to Wegner, if the continents of South America, Africa, Australia, Antarctica and India are imagined as a single landmass as stated in his theory, they would occupy the Southern Hemisphere almost near the South Pole. This polar condition allows for the glaciation in these continents. Meanwhile, the North America, Europe and Asia takes the equatorial position which helps these continents to develop luxurious tropical swamps that were converted to extensive coal deposits on burial later.
Wegener also identified the presence of same rock types in the Brazil and Africa. He also observed the same age of Appalachian mountain belt and the mountains British Isles and Scandinavia. Hence, Wegener proposed that these mountain chains are nearly continuous belts, which later separated due to drifting.
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Chapter 2 Solutions
Essentials of Geology (12th Edition)
- For the past 3 million years the earth has experienced glacial-interglacial cycles at regular intervals that coincide with the Milankovitch Cycles. Please briefly describe the three Milankovitch Cycles and their timescales. What is the leading theory for why the timing of glacial-interglacial cycles is connected to these Milankovitch Cycles?arrow_forwardWhy do waterfalls move backwards over time? In your explanation, please use the term “nickpoint”?arrow_forwardThe picture below is of the Kaskawulsh Glacier in Yukon, Canada. What is the name of the type of feature that the red arrows are pointing to in the middle of the glacier and how are these features formed? In your answer please also define the term lateral moraine and how lateral moraines relate to the feature with the red arrows?arrow_forward
- it was stated that one major effect of rivers is to flatten out the continents. How do rivers flatten continents?arrow_forwardThe figure below shows the average change in glacier mass per unit area for various mountainous regions around the world. Why are the globe’s mountain glaciers shrinking? Does glacial melt increase or decrease the amount of water stored on the continents? What are the factors in the continental water budget equation that must change in order to restore equilibrium when glaciers melt ? What is the effect on global sea level?arrow_forwardWhat is continental precipitation recycling ?Using the concept of precipitation, please explain why changes in landcover in one place can feed back to impact the climate not only in the area where the landcover change occurred but also in other regions?arrow_forward
- In the western United States, does severe forest fire tend to increase or decrease streamflow? What are the two main reasons hypothesized to cause this effect?arrow_forwardForest-fire sizes in the western US have grown rapidly in recent decades. made the case that this was not due to increased human population and resultant human-caused ignitions. What was the main evidence for this?arrow_forwardDraw a cross section with a tree growing out of Earth’s surface (so I know which side is the surface). Add a dipping joint and label the hanging wall and footwall blocks. Draw a second cross section (again with a tree on the surface of the Earth) that shows how Earth’s surface would be offset along this joint if it turned into a normal fault. Label the hanging wall and footwall and use arrows to indicate the motion of the hanging wall relative to the footwall. Now draw a third cross section with all the same elements as in parts A and B, but for a trust/reverse fault. Imagine the same cross section either in three dimensions, or in a bird’s-eye view from top down. Draw what this area would look like after a right-lateral strike-slip fault. Label the strike of the fault and use arrows to show directions of movementarrow_forward
- Examine the strike and dip of the rock units on the Devil's Fence geologic map in Figure 6.21. Draw multiple large arrows on the map, pointing in the direction of dip on several rock units. Do the rock layers located near the center of the map in Section 14 dip toward the northwest or southeast? The same rocks in Section 14 are also found in Section 18. Do the rocks in Section 18 dip toward the east or west? What is the approximate angle of dip of the units in Section 18?arrow_forward1. Draw a dashed line representing the hinge line of the large geologic structure that occupies most of the map. Label the hinge line. 2. Are the rocks getting older or younger farther from the hinge line? 3. Is this geologic structure a plunging anticline or syncline? 4. Provide two lines of evidence that support your answer to Question 8.arrow_forwardOn the map in Figure 6.21, write the word oldest where the oldest sedimentary rock unit is exposed at the sur-face and the word youngest where the youngest sedimentary rocks occur.arrow_forward
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