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This second edition of the leading book on Grand Canyon geology contains the most recent discoveries and interpretations of the origin and history of the canyon. It includes two entirely new chapters: one on debris flow in the Canyon and one on Holocene deposits in the canyon. All chapters have been updated where necessary and all photographs have been replaced or re-screened for better resolution. Written by acknowledged experts in stratigraphy, paleontology, structural geology, geomorphology, volcanism, and seismology, this book offers a wealth of information for students, geologists, and general readers interested in acquiring an understanding of the geological history of this great natural wonder.
In 'The Geologic Story of Palo Duro Canyon' by William Henry Matthews, readers are taken on a journey through the fascinating geological history of one of Texas' most iconic landmarks. Matthews dives deep into the formation of the canyon, exploring the various rock layers, fossils, and unique features that shape its landscape. With a meticulous attention to detail and a clear passion for the subject matter, Matthews presents this geological information in a captivating and accessible way, making it a must-read for both geology enthusiasts and general readers interested in natural history. The book is written in a descriptive and informative style, providing readers with a comprehensive understanding of the geological processes that have shaped Palo Duro Canyon over millions of years. Matthews' expertise in geology shines through in his expert analysis and interpretation of the canyon's geologic features, making this book a valuable resource for anyone curious about the Earth's geological history. Readers will come away from this book with a newfound appreciation for the natural wonders of Palo Duro Canyon and a deeper understanding of the forces that have shaped our planet's landscapes.
The Grand Canyon is famous for its rock layers, multihued bands of limestones, shales, sandstones, granites, and schists that have made the canyon one of the Seven Natural Wonders of the World. But in many of those layers, the Grand Canyon contains a veritable sea of fossilized life, from ancient stromatolites in the Grand Canyon Supergroup layers to trilobites in the rimrock Kaibab Formation to ancient reptile trackways preserved in the Coconino Sandstone. An Introduction to Grand Canyon Fossils introduces readers to the vast evidence of ancient life in the canyon and to paleontology, the study of fossilized life. Written in an easy-to-read style and heavily illustrated with diagrams and photographs, the book offers readers access to worlds of ocean shallows, windswept sand dunes, and swampy forests that once covered the Grand Canyon region and have left evidence of their presence in fossils. An Introduction to Grand Canyon Fossils is the only book of its kind focusing on the fossils of the national park, and it will be a delight to readers young and old fascinated by evidence of life hardened in stone.
A creationist's critique of the evolutionary ideas found in the three most popular earth science textbooks used in public schools: [1.] Earth science : geology, the environment and the universe / National Geographic Society ; [authors: Frances Scelsi Hess [and others]]. Teacher wraparound ed. (New York : Glencoe/McGraw-Hill, c2005) -- [2.] Prentice Hall earth science / Edward J. Tarbuck, Frederick K. Lutgens. Teacher's ed. (Needham, Mass. : Pearson Prentice Hall, c2006) -- [3.] Earth science / Mead A. Allison, Arthur T. DeGaetano, Jay M. Pasachoff. Annotated teacher's ed. (Orlando, Fla. : Holt, Rinehart and Winston, 2006).
This bulletin serves not only to introduce the non-geologist to the rich geology of Millard County, but also to provide professional geologists with technical information on the stratigraphy, paleontology, and structural geology of the county. Millard County is unique among Utah’s counties in that it contains an exceptionally complete billion-year geologic record. This happened because until about 200 million years ago the area of present-day Millard County lay near sea level and was awash in shallow marine waters on a continental shelf upon which a stack of fossil-bearing strata more than 6 miles (10 km) thick slowly accumulated. This bulletin summarizes what is known about these strata, as well as younger rocks and surficial deposits in the county, and provides references to scientific papers that describe them in greater detail. Mountains North 30 x 60 (1:100,000-scale) quadrangles. These companion maps and this bulletin portray the geology of Millard County more completely and accurately than any previously published work.