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Biology ♦
Chemislry and
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Computer
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Science ♦ Geology ♦
Mathematics and Statistics
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Physics
Spring 1994 College of Science
MacMahon's Musings A recent announcement at Utah State University may interest Dean James A. you. We are about to MacMahon embark on an analysis of our general education program to determine its strengths and weaknesses. If all goes well, we will deal with the weaknesses and enhance the strengths. My own feeling, one I have hardly hidden, is that the current approach is no longer a viable option for lea.ming. Many share this belief. As an example, the Liberal Arts and Sciences Program (LASP) offers an alternative to the existing general education curriculum. The LASP was developed by faculty members in the Colleges of Science and of Humanities, Arts and Social Sciences. They were concerned that our students were not exposed to the best possible educational experience. The LASP approach seeks to define a set of educational goals and then to develop a curriculum that maximizes the attainment of these goals. The current general education system contains lessfocused goals and fewer assurances that students will attain those goals. From the perspective of the sciences, there are many changes in the curriculum that should improve the education of our students, whether or not they are in the College of Science. Let me give a preview of one or two ideas that we will be studying. Plea e remember, however, that since thi effort is a campus-wide activity, I can offer no assurance that anything I say will come to pass. One can make the argument that every graduating senior at the University MUSINGS continued on page J
Alumni Newsletter
Vol. 2 Issue 2
Young Wo01en Expand Horizons in Science and Mathe01atics Expanding Your Horizons in Science and Mathematics is a national program designed to introduce young women, grades 6-12, to the many different opportunjties offered by science and math. Expanding Your Horizons challenges the myth that women do not belong in science and math-related fields, says Sue Morgan, Program Coordinator. Young women and their parents enjoy EYH displays. Each November, the College of Science hosts the local, one-day event held on the USU campus. Young women from Cache Valley and neighboring counties come to the University for a day of hands-on activities de igned to introduce them to a wide variety of careers based on math and science. Erin Larsen, a two-year participant in the program, said, "it makes you feel like there is so much more you can do." At this year's program, the young women were divided into two groups according to grade: grades 6-9 and grades l0-12. Girls in the younger group attended three classes of their choice, whereas young women grades I 0-12 attended two workshops of their choice and a small group discussion led by an Expanding Your Horizons volunteer. In this personal setting, the Inside Insights participants could ask questions and different issues in math and science discuss A/unmet Responses............... 6 that were important to them. Expanding Horizons .............. 1 Workshops included the practical Golden Aggies ....................... 3 exploration of sciences like chemistry, during the "Chemistry in Cooking" session, Math Ed. Lab ......................... 4 and physics, with a tour of the radio New Dept. Head .................... 2 facilities. Lar en explained, "We made a Rock Day ............................... 5 commercial at KUSU for Expanding Your Tribute ................................... 7 HORIZONS continued
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College of Science
Ridenhour Chosen as New Head of Mathe01atics and Statistics Depart01ent
Jerry Ridenhour
In October 1993, Dr. Jerry Ridenhour was named department head for the Department of Mathematics and Statistics, succeeding Dr. Duane Loveland, who served as head for 12 years. Dr. Ridenhour received a PhD in mathematics from Arizona State Univer-
sity in 1971. He then spent the next I0 years on the faculty of Northern Illinois University (NIU), where he was I of 9 finalists from over 700 eligible faculty for their "Excellence in Teaching" award. In 1978, he took a two-year sabbatical at the University of British Columbia, before serving as the Departmental director of undergraduate studies at NIU. In 1981, Dr. Ridenhour came to USU as a professor of mathematics and has since taught over 30 different mathematics classes. He has also directed PhD research and served as the Departmental director of graduate studies from 1983-86. Dr. Ridenhour' s research focuses on the qualitative theory of higher-order, ordinary differential equations. His research establishes properties of the solutions where the equations are too
Graduation 1994 Friday, June 3 College of Science Open House 3:30-4:30 p.m. SER Patio Saturday, June 4 Procession from Old Main to D. Glen Smith Spectrum 8:30-9:30 a.m. Utah State University Commencement Exercises D. Glen Smith Spectrum 9:30-11 :00 a.m. College of Science Graduation 12 noon Taggart Student Center Ballroom Graduation Picnic HPERField 11:00 a.m.-2:30 p.m.
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complicated to be solved in closed form. The study of zeros of solutions comprise much of his work. Six of Dr. Ridenhour's 20 research papers appear in the Journal of Differential Equations, the flagship journal for publications in the area of ordinary differential equations. Recognizing the importance of quality teaching, he recently served a two-year term as chairman of the Intermountain Section of the Mathematical Association of America (MAA). This professional organization promotes effective teaching of undergraduate and beginning graduate mathematics. Dr. Ridenhour continues to teach one course every quarter because "I still think of myself as a faculty member as well as an administrator." As an administrator, Dr. Ridenhour wants to limit class size to 40, allowing more student interaction with instructors. "Our commitment to students will help uphold our reputation for teaching excellence." One way the Department furthers this teaching excellence is thro_ughthe new Mathematics and Statistics Technology Classroom (see related story on page 4). All math education classes will be taught in this room, giving pre-service math teachers full access to the latest technology. While recognizing the benefits of modem technology, Dr. Ridenhour sees the technology bringing new problems to the Department. "The challenge is to use the technology correctly, not to jump in blindly, but to have an understanding of the concepts underlying the calculations," said Dr. Ridenhour. Students must understand the mathematical principles behind the computer-derived solutions. "Calculators and computers , used correctly, do the routine calculations. This allows the students to understand the subject at a deeper level." The College of Science congratulates Dr. Ridenhour on this new position .
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Insights
College of Science Honors Golden Aggies We are pleased to recognize three of our Golden Aggies, graduates from the Class of '44.
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Margaret Bartholomew Engstrom earned a BS in mathematics. Recalling her stay at USU, she commented, "It is a place I dearly love; I hated to leave." Upon graduating from USU, she taught high school math at her hometown, Ogden, Utah, for two years . She then married her husband, Don Engstrom, and moved to Nyssa, Margaret Oregon, where she Bartholemew continued teaching Engstrom for IO years . "It was always so gratifying when students did well and followed in your footsteps," she recalled. Engstrom and her husband have two sons and seven grandchildren. In recent years , she and her hu band have enjoyed traveling throughout the U.S., particularly to the New England states, and Eastern Canada. She also enjoys participating in church activities, reading , and doing handiwork.
Maxine Burgoyne Laser graduated with a BA in bacteriology and biochemistry. Commenting on her fondest experiences at USU, she said, "Since it was during the war, many professors were teaching physics and other courses to airforce cadettes. So I was asked to teach elementary physic s my senior year ." After graduation, Laser taught chemistry for three semesters at the University of Southern California and conducted research . While teaching there , she met her husband, Theodore John Laser, a student in one of her classes. Jn the fall of 1945, she then moved to her hometown , Montpelier, Idaho , to teach one year of high school general science and biology. From Max ine Burgoy ne 1946 to 1948, Laser Laser taught at USU while her husband finished his degree. "I wasn ' t even 25, yet I'd taught three different subjects on a college level," she noted.
After her teaching career at USU, Laser raised six children, two of whom also graduated from USU. She and her husband live in Kaysville, Utah. She enjoys her 16 grandchildren, music , needlework , and reading about nutrition. Harold E. DeLaMare graduated from USU with a BS in chemistry. He then worked at Eastman Kodak before pursuing a PhD in organic chemistry from Purdue Harold E. DelaMar e in 1951. After completing his graduate work, DeLaMare joined Shell Development Co. in Houston, Texas , the summer of 1951 and worked there 34 years until his retirement in 1985. He is married to Carolyn Huish Johnson. They have 6 children and will soon have IO grandchildren , since 2 more will be born this month. DeLaMare and his wife enjoy church work, serving three years in Singapore. ♌
MUSINGS continu ed from page I
hould be familiar with the u e of computers since modern society depend evermore on these machines for everyday transactions. In response to this belief, we will recommend the development of a computer skills requirement. Students could meet this requirement by passing an online test, consisting of a small set of modules that assess competency in a few basic computer skills. These modules could be taken in any order , at any time before a student graduates. There would be no specific course requirement, though several departments offer courses that would help students prepare for the online test. In most cases, we hope entering fre hmen will already have these computer skills. This requirement will allow us to maximize the use of computers in the educational process . We are not trying to tum every student into a programmer , but we would be irresponsible to not prepare our students for a technologically different world than the one that existed when many of us completed our degrees. In a similar manner , we are looking at these questions : to what body of scientific knowledge should all students be exposed, and can this be delivered in an integrated science
course rather than in discipline-specific options? This is a difficult series of cerebrations because we do not want to offer a watered-down general science curriculum that is so general that it is u eless . At the ame time, we want students to see the unity and interrelatedness of the sciences, mathematics and human endeavors. The reason for bringing this initiative to your attention is to elicit your help. You are our products. We need to know how you feel about your education, now that you are out of school and using what you learned. Comments about the general education part of your training, rather than department- pecific curriculum matters , would be most useful. You owe it to the next generation of scholars to help us improve because you know better than anyone where we have been less successful than desired . I look forward to hearing from you and will keep you apprised of our progress in thi important venture. Please help us as we work to provide the map and the compass for a better general education.
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College of Science
Mathematics and Statistics Technology Classroom Launches Math Teachers into the Future The Departments of Mathematics and The room has 30 student stations, one tive teacher conversation," said Weeks. Statistics, Elementary and Secondary Novell network server , and an instructor After the stable curriculum information is Education, and Instructional Technology station. The instructor's computer displays coUected from the bulletin board, it can have joined forces to create the classroom onto a large-screen monitor mounted to be recorded onto CD ROM for reference. of the future. The mathematics education the ceiling and onto an overhead projecPhase Two will also bring multiple CD computer-assisted classroom uses the tor. An electronic writing tablet can be ROM drives online in the technology latest design in computer stations and attached to the projector for an added classroom. Weeks, Heal, and Dorward are network connections to teach pre-service dimension of iligitized handwriting on top currently planning Phase Three for math teachers. of the computer "authoring our own CD ROMS for class Director of display. plans to teach specialized math topics," "We want students to be acquainted Undergraduate Software said Weeks. with modern technology when they Studies in Mathematprograms The classroom and communications ics and Statistics currently used network serves three purposes: it supports go out to teach. We integrate Robert Heal; Comin the technolthe teacher education program; makes technology in education." puter Systems ogy classroom math, science, and technology more Specialist and Utahinclude word available to teachers and students with certified secondary level-four mathematics processors , spreadsheets, logo, geometry disabilities and those considered at-risk ; teacher Russ Weeks; and Assistant exploration, algebra exploration, symbolic and provides a unique opportunity for Professor of Elementary Education Jim mathematics programs, problem-solving collaboration between public schools, Dorward combined their expertise to software, and presentation software. businesses and Utah State University . create the new classroom for math Geometry software, for example, allows Classes in the technology classroom education courses. Heal said, "We want students to discover geometry as they began fall quarter , 1993. Nine classes are students to be acquainted with modem draw, measure, use geometric construccurrently taught in the technology technology when they go out to teach. We tion, and test geometric conjectures. classroom. In the evenings, public school integrate technology in education." "Think of it as a microcomputer straightteachers can take graduate classes. Weeks The computers help students visualize edge and compass," said Heal. said, "In reality, a public school teacher math concepts such as calculus and Funding for the new classroom and may not have the same facilities as the geometry, an alternative to "staring at a curriculum is provided by a grant from university, but they will know how to bushel of numbers ," said Weeks. The the Educational Technology Initiative: teach with computers, even if they have software aids students' understanding of Mathematics Technology for Elementary only one computer in the classroom." three-dimensional graphs, surface plots ¡ and Secondary Concerning and symbolic calculus in a friendly Education. The future plans, "We hope to establish a video link windows environment. grant, matched by Doward said, "We to share with public school teachAt first glance , the new classroom USU, helped build hope to establi h a appears to have no trace of the usual the new facility in video link to share ers in rural areas, using the classcomputer paraphernalia. A closer inspectwo phases . The with public school room as a filming studio. " tion reveals the brilliantly concealed first phase of the teachers in rural design of the hardware. Students view grant supplied areas, using the monitors (mounted under the desk at an computer hardware, classroom equipclassroom as a filming studio . Also, we angle) through glass desktops . Trays slide ment, and the beginning of the course want to develop a regional lesson plan out beneath the desk for the keyboard and curriculum design. database . Teachers in outlying areas can mouse. There are no exposed wires or Phase Two supports the acquisition of access the database to use lesson plans for cables to trip over. The entire room has a CD ROM equipment and software , in specific math topics." clean, efficient design, making it easy for addition Locontinued curriculum developThe math technology classroom the students to focus on mathematical ment, which is always "a work in system is currently connected to USU's ideas instead of being distracted by progress, " Weeks said. Phase Two will Merrill Library CD ROM and the cumbersome hardware. Another clever provide an electronic bulletin board Education Building database . In the touch to the personality of the classroom service that connects math teachers future, Weeks hopes to link the system to is that every student station is named after everywhere. Teachers can write, read, and databases outside the Univer sity. "We've a famous mathematician , such as Newton, copy math class curriculum ideas. "The got capabilities we haven't begun to Gaws , and Noether. bulletin board will be a dynamic, interactap into."•
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Insights
Geology Departntent Hosts Second Annual Rock and Fossil Day The USU Department of Geology National Monument; Kilauea: Close-up of an Active Volcano; sponsored the second annual Rock and Earthquake Awareness and Risk Reduction; and Out of Rock. Fossil Day on November 20, 1993, in the Geology faculty, graduates, and undergraduates hosted Rock Geology Building. This event allows the Geology Department to and Fossil Day. The Geology Club set up displays, helped guests showcase their modern facilities and offer their services to the identify types of minerals, directed visitors, and cleaned up. public. Donald W. Fiesinger, head of the Department of GeolGeology Club President Dan Wilcox said, "In the rock and ogy, began Rock and Fossil Day in 1992. mineral identification room, kids came Both years, the community responded in with bags and bags of rocks for us to "We had everyone from toddlers to enthusiastically. This year, about 300 identify." Wilcox said that his interest people, including young students, in geology developed at an early age: retired couples looking at the parents, scout groups, retirees, and "My grandfather was a rock hound. I collections and bringing in speciamateur rock hounds, attended the fourhelped him cut and polish rocks." mens for us to identify. " hour open house. Besides hosting the annual Rock Fiesinger describes the open house as and Fossil Day, the Geology Departan informal opportunity for the public to ment welcomes the opportunity to handle dinosaur fossils, inspect minerals with microscopes, or serve the public throughout the year. Fiesinger stated, "Our watch "rock videos" (geology documentaries). "There are no facilities are supported by the taxpayers. We like to do all we can formal lectures," said Fiesinger, "so visitors are welcome to to pay them back. The public can always use our maps, speciroam the different display rooms at their leisure." Rock and mens, or displays." Fossil Day is free of charge and the Department encourages Scouts and other community groups can tour the mineral families to participate. displays, and people often call the Department with earthquake "The primary focus is on school-age children," added or fossil questions. "The funniest question we've ever bad was Fiesinger. The Department aims many of the activities, displays, 'what is the State dinosaur?"' said Fiesinger. "We didn't know demonstrations, and videos at young, would-be geologists. "We there was a State dinosaur, but we found the answer for them." had everyone from toddlers to retired couples looking at the The State dinosaur happens to be the Allosaurus. + collections and bringing in specimens for us to identify," Fiesinger stated. Tim Bacheller, age 11, of Smithfield, Utah, attended Rock and Fossil Day with his father. Tim said, "I liked the movies and looking at the maps and microscopes." This year's event featured paleontologist Lloyd Gunther, a world-renowned fossil collector who exrnbited some of his extensive collection of Cambrian fossils. Gunther has specimens in many museums, including the Smithsonian. He donated a replica of an alligator fossil to the USU Geology Department for its permanent collection. Geologic groups outside the University added to the day's events and activities: Doug Sprinkel (BS 1975, MS 1977) presented maps, pamphlets, and other infom,ation from the Utah Geological Survey; the Mineral Collectors of Utah, a Salt Lake City-based ¡ club, brought mineral displays; Tom Lindgren, of Green River Paleo Labs, Logan, demonstrated dinosaur fossil preparation; and the Utah Museum of Natural History brought replicas of a dinosaur skull and other fossils for visitors to handle. Another highlight of the day was the rock videos. Two Tim Bachel/er , Nick Casamassa and Galen Trostle, students from Edith Bowen Elementary School, examine a mineral display in the Geology Building. screenings of each video ran thoughout the event: The Earth Has a History; Dinosaur: Fossils and Paleontology in Dinosaur
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College of Science
Alu01net Responses parasitology lab, studying toxoplasmagondii. She married Michael Niesman , and they have one daughter.
Kirk H. AJlred (BS, 1978, Predental Biology) earned a DDS in 1982 and an MSD in orthodontics in 1986 from the University of Washington . For the past seven years, he has been practicing orthodontics in Ogden , Utah. He married Leslie Jessop, also a USU graduate, and they have five children.
E. Forrest Nutting (BS 1951, Zoology) received an MS in genetics and a PhD in endocrinology at the University of Wisconsin . He retired in 1986 from G. D. Searle and Company after serving 26 years as their director of biological research. Currently, he provides consulting services in human and animal reproduction, fertility control, and R&D Administration at Nutting Research Consultants . He and his wife, Shirley, have six children.
Randy L. Bell (BS 1973, Chemistry) received a PhD in chemistry at the University of Oregon in 1977. He now manages a drug discovery group at Abbolt Laboratories and is the co-developer of leutrol , a new medication for asthma and allergic rhinitis. He and bis wife, Joann , who also attended USU, live in Northern Illinois with their five children. Gregory T. Blotter (BS 1985, Computer Science) works for Hewlett-Packard in Silicon Valley, California, as a technical consultant. Susan Fortier Collinge (BS 1978, Biology; MS and PhD 1982 and 1989, Food Science) currently works-at Food Group Headquarters for the J.R. Simplot Company as a statistician. She is married to Mark Collinge, and they have three children.
Teri S. Peterson (MS 1989, Statistics) attended San Diego State University, where she received an additional MS in biology . Currently, she is employed at Idaho State University and teaches two classes in business statistics and consults faculty and graduate students in statistical analysis. Harlan G. Pulsipher (BS 1950, Chemistry; MS 1956, Analytical Chemistry) worked as an industrial chemist in research and development for 35 years before retiring from Thiokol in 1991. He is married to Marilyn Allen, who graduated from USU in I979. They have 12 children and 28 grandchildren.
Edwin M. Duffy (BS 1969, Geology) is an AVP for Reliance National Insurance Company in Dallas, Texa~. He specializes in underwriting oil and gas risks.
Rigby C. Roskelley (BS 1936. Entymology) completed an MD in 1944 and two years of post-graduate work at Yale. He then taught eight years at NUMS and performed clinical work. Following that experience, he worked six years at Illinois Medical College in Chicago and later as a senior staff member at Rush Presbyterian St. Luke's Hospital , also in Chicago. He was staff president there from I966 to 1967 and retired in 1975 to farm, hunt, and fish.
Tariq Abdul Rahman Kergaye (BS 1962, Mathematics; MS 1963, Civil Engineering) attended the University of Utah where he earned a PhD. Now retired from the Utah Department of Transportation, he helps refugees from Kurdistan (Northern Iraq). Ann L. Knowlton (BS 1992, Biology) is pursuing a PhD in marine biology at the University of Alaska, Fairbanks. Her project will include studies of intertidal habitats on the Kenai Peninsula.
David L. Schilling (BS 1969, Zoology) completed a teaching certificate in 1973 at Southwest Missouri State. Since then, he has worked at Washington University in St. Louis for 16 years and is their biological research station manager. The site, Tyson Research Center, houses Marlin Perkin's Wolf Sanctuary and The World Bird Sanctuary. Both organizations are involved in breeding endangered species.
C. James Lovelace (MS 1964, Botany; PhD 1966, Sociology) has been teaching for 29 years at Humboldt State University in Arcata, California. His courses include general biology and plant physiology at both the undergraduate and graduate levels. He and his wife, Gloria Abel, have two sons and one daughter.
Michelle (Miki) Stuebe (MS 1984, Biology/Ecology) earned an MLA in Landscape Architecture from the University of Illinois in 1990. She then worked in Denver as a landscape architect/ecologist for the National Park Service . She married Doug Anderson, who received his PhD at USU in 1980. They have two young children.
LaRue West Miller (BS 1958, Mathematics) earned an MA in mathematics at Arizona State University in 1962. She then taught college math part-time in Utah, Arizona , Minnesota, and Alaska while raising four children. LaRue is now completing her 15th year as a software test engineer. She and her husband, Robert Miller, a 1957 USU graduate, enjoy their four grandchildren.
Raymond (R.J.) Tesi (BS 1977, Biology) completed his MD in 1982 at Washington University in St. Louis, Missouri. He is moving to Tulane University to be an associate professor of surgery for the Head Start Extra-Renal Transplant Program. He and hi wife, Claudia, a molecular biologist, have a four-year-old daughter.
Ingrid Reynolds Niesman (BS 1981, Biology) completed an MS in biology at the University of Illinois in I984. She works at Washington University Medical School as a research technician in a molecular
The College of Science Congratulates Top Profs The Mortar Board Honor Society named 23 Top Profs at their annual recognition dinner February 15, 1994. Top Profs are professors and instructors who have had a positive effect on students' lives. Seven out of the 23 professors and instructors are from the College of Science . Paul Cliften, Biology ♦ Ted Evans, Biology ♦ Bob Heal, Math ♦ Joe Koebbe, Math Brad Kropp, Biology ♦ Don Lind, Physics and CASS ♦ Jim Powell, Math
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Insights
Tribute to Neville Hunsaker The College of Science lost one of its most faithful supporters last December with the death of Neville C. Hunsaker, two days short of his 86th birthday. Born in 1907 to Israel Hunsaker Jr. and Rosabel Carter, Neville grew up on a ranch in western Box Elder, where he graduated from Box Elder High School in 1926. He then attended the University of Utah, recording in a l 927 journal when an algebra teacher encouraged him to consider a career of teaching mathematics. After receiving a bachelor's degree in 1930, Neville began graduate study on a Thompson Scholarship to the University of California at Berkeley, where he also met and married Annie Peterson, another mathematics major. Neville, after graduating from UC-Berkeley, worked at Rieber Laboratories in both Los Angeles and Houston before teaching mathematics at the University of Houston and beginning doctoral work at Rice University. After accepting an appointment at USU in 1941, he took a sabbatical to finish his PhD (in complex analysi ) at Rice in I 948. When Neville became head of the Department of Mathematics in 1958, USU had no Neville c. Hunsaker graduate program in mathematics, but despite a nationwide shortage of trained mathematicians, Neville worked vigorously to recruit qualified faculty who could contribute to a graduate program. He inaugurated a master's program and laid the foundation for a doctoral program, which came after his retirement in 1974. Always concerned about quality teaching at all levels of mathematics, Neville was an early participant in and director of National Science Foundation teacher development programs. During the 1960s and 1970s, Neville successfully obtained NSF grants totalling about a million dollars for secondary school and junior college teachers. His three-year, sequential institute for junior college teachers resulted in about 30 teachers earning master's degrees. Colleagues marvel at the far-reaching influence of his training; participants in his programs continue to send their students to USU. Through generous financial contributions by the Hunsakers, the Department of Mathematics established the Neville and Annie Hunsaker Scholarship. Initially providing support for a single year of study, the scholarship endowment now awards four-year scholarships . Neville continued to teach and be involved in Department conversations and activities throughout his 10 years as a professor emeritus. He is survived by his wife, 5 children and 26 grandchildren, who, with his colleagues and friends, will greatly miss his love of family, mathematics, ranching and music.
HORIZONS continued from page I
Horizons and added music and cut out mistakes using the computer." Other sessions explored social science and accounting skills. The workshops were taught by women from the community, role models who use science in their daily lives and willingly volunteer their time and under tanding to the participants. Following the morning sessions, the groups met to pick up their program T-shirts, enjoy lunch, and attend an exciting final presentation. Morgan, a temporary lecturer in the Geology Department, volunteered for three years as a workshop leader before becoming the Coordinator of Expanding Your Horizons this past year.
"There are lots of opportunities available, even if you don't think you want to be a scientist. Take some science and math classes and expand your horizons," Morgan explained to the young women. "You never know what life will bring you. A broad background will help you make a more educated choice and may take you a step farther. It is important to keep your options open." Each of the participants paid a nominal $10 fee. The College of Science, a grant from the Provost's Office, and donations from USU departments and local businesses funded the remaining cost for the workshops, materials, T-shirts, and lunch.
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The next Expanding Your Horizons program will be held November 1994. Anyone wishing to volunteer, donate, or receive additional information, please contact Sue Morgan at 750-2176.
We never knew science could be this messy!
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Dear ColJege of Science Alumni and Friends, We continue to enjoy and appreciate your ALUMNET respon es. Your standard of excelJence, both personal and academic, has continued beyond a university education, and we are proud to be part of that success. Please keep us informed of your activities. Responses received after the printing deadline will be included in the next newsletter. lf you have not written yet, we look forward to hearing from you soon. Name USU Degree(s) (year) Other Degrees (year, school) Addre s About Yourself
lllsights was produced by English Department interns Kerry Griffin, Paula H. Larsen, Dien Parker, and Jana Lee Swope. Special thanks to: Jim MacMahon, Joe Elich, and Larry Cannon. Project Coordinator and Editor: Colette D. Yates. Intern Coordinator and Editor: Paula H. Larsen.
Utah State University College of Science Office of the Dean Logan, Utah 84322-4400
Pres. George H. Emert President's Office
UMC 1400
Printed o~ recycled paper.