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Charles W. Woodworth was a central figure in entomology in the first three decades of the 20th century. He was the first to cultivate in a laboratory the famous model species Drosophila melanogaster and suggested to W. E. Castle that it could be useful for genetic research. He directed the world’s first successful city-scale salt-marsh mosquito control effort. C.W. was a key early figure in what is now known as Integrated Pest Management and helped California agriculture respond to many insect threats. He wrote California’s First Insecticide Law in 1906, got it passed in 1911, and administered until 1923. His supple and comprehensive mind produced significant accomplishments in seven diverse fields: entomology (insects), plant pathology, public policy, optical physics, optical engineering, machine calculation, and distillate chemistry. Within entomology, he published in anatomy, classification, systematics, theoretical economic entomology and applied economic entomology. His optics achievements include early contributions to the science of multi-element telescopes, the technique that is used today in the world’s largest telescopes. He attempted to build the world’s largest telescope in his back yard. He contributed to the ability to analyze distortion, curvature, axial aberration, coma and astigmatism. He also created forms of optical calculations for lens design specifically tailored for machine calculation. In 1936, he taught classes in optical triangulation at Bausch & Lomb, the leading maker of optical weapon sights for the U.S. Navy in WWII. He founded the Entomology departments at what are now the University of California, Berkeley and the University of California, Davis. He served as the Chief Entomologist at the California Spray Chemical Company, the enterprise that created the Ortho brand of pesticides. He was happily married and had four children who all lived full and successful lives. He designed his family home, which became a Berkeley architectural landmark. A colleague referred to him in a speech as “a very modest and tolerant man.” The University of California named him Emeritus Professor upon his retirement. His obituary was printed in Science and in the New York Times. Four species of insects were named after him. Of these four, a planthopper, Cixidia woodworthi, now named Epiptera woodworthi, retains “woodworthi” in its modern name. The Pacific Branch of the Entomological Society of America has given out their C.W. Woodworth Award for achievement in entomology in the Pacific slope region over the last ten years since 1969. This book is intended to be the definitive biography of Charles W. Woodworth.
In the last few decades there has been an ever-increasing component in most BSc Zoology degree courses of cell biology, physiology and genetics, for spectacular developments have taken place in these fields. Some aspects of biotechnology are now also being included. In order to accommodate the new material, the old zoology courses were altered and the traditional two-year basis of systematics of the animal kingdom, comparative anatomy (and physiology) and evolution, was either severely trimmed or reduced and presented in an abridged form under another title. Soon after these course alterations came the swing to modular teaching in the form of a series of shorter, separate courses, some of which were optional. The entire BSc degree course took on a different appearance and several different basic themes became possible. One major result was that in the great majority of cases taxonomy and systematics were no longer taught and biology students graduated without this basic training. We field biologists did appreciate the rising interest in ecology and environ mental studies, but at the same time lamented the shortage of taxonomic skills, so that often field work was based on incorrect identifications. For years many of us with taxonomic inclinations have been bedevilled by the problem of teaching systematics to undergraduates. At a guess, maybe only 5% of students find systematics interesting. It is, however, the very basis of all studies in biology - the correct identification of the organism concerned and its relationships to others in the community.
Understand the insect world with BORROR AND DELONG�S INTRODUCTION TO THE STUDY OF INSECTS! Combining current insect identification, insect biology, and insect evolution, this biology text provides you with a comprehensive introduction to the study of insects. Numerous figures, bullets, easily understood diagrams, and numbered lists throughout the text help you grasp the material.
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Urban Landscape Entomology provides readers with the background needed to adequately understand and manage many of the complexities of urban landscape pest management. For those who need training in landscape entomology, this work serves as a practical guidebook and resource. Its chapters include quality color images of pests, along with pest management tactics, such as tree injection procedures. This topical arrangement facilitates easy extraction of information relevant to a particular situation (e.g., management of borers) and uses practical terms without oversimplifying the subject matter. This work is an invaluable resource for practitioners of landscape entomology, including technicians and operations that service local landscape management needs, such as horticultural and turfgrass management. In addition, it is also a useful reference for advanced courses in landscape entomology. - Includes diagnostic information on both turfgrass and ornamental pest management - Concludes each chapter with a list of key papers for further reading and research - Provides information on open-source online resources for insect identification and insecticide classification - Includes details of the author's international work in such urban landscapes as China, Costa Rica and Cuba, also including additional global perspectives