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Insights, Spring, 1998

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Spring 1998 College of Science

Alumni Newsletter

MacMahon's Musings When you read this note we will be in spring quarter, our last academic term in Dean Jim MacMahon the quarter format. In the fall we make the switch to the semester system . The transition has not been without problems; however, the faculty have worked hard and the switch will be about as smooth as possible. Every department in the College of Science used the switch to semesters as an opportunity to examine their teaching programs, including requirements for majors, course content, the development of new courses and, as might be expected, dropping courses that no longer fit our concept of an excellent curriculum. We do such introspective analyses of various classes frequently, but wholesale analysis is much less common. From my vantage point, I am excited by what the faculty has initiated. I can , without hesitation, recommend that you send your sons and daughters to major in science at USU, knowing that they will be even better trained than you were. Spring quarter also marks the second time we contacted you by mail and perhaps by phone to ask for your financial support. Many of you have already responded generously, and I thank you. We have many projects that need your help and we hope that you will find that your current circumstance will allow you to help us out a little. Students still need scholarships, as well as some funds that will support them while they are conducting undergraduate research projects . Our experience is that graduate schools, medical schools and a variety of employers all like to see

MUSINGS... Continued on page 4

Vol. 6 Issue 1

College of Science Leads the Way in Technology-Enhanced Learning Ask Dr. Chris Coray of the Department of Mathematics and Statistics about the opportunities technology offers to the science classroom and his voice quickens. He interrupts a torrent of information to say, "Stop me if I lose you. I tend to get carried away." Questions directed toward any other department in the College of Science elicit similar enthusiastic response. Technology-enhanced learning is ''We believe techno logy enlivening College of Science classes, h l d and usu professors are contributing can e p s!u ents learn significantly to the growth of commathematical concepts puter-enhanced learning across the in ways that have never country. Much of this growth is fueled by before been poss ible" funds from the Utah Higher Education Technology Initiative (HETI), and curriculum developments are aimed at both classroom instruction and distance learning. In 1993-94, Dr. Bob Heal, Department of Mathematics and Statistics, worked wi~ Dr. JimDorward, Department of Elementary Education, to develop a uruque computer-enhanced classroom thanks to ETI funds and financial support fr~m the provost's office at USU. The classroom, housed in Geology 405, has thirty networked computers, one for each student. Each computer is mounted beneath the desk and the student views the monitor through a transparent Lexan desktop. The keyboard and mouse pad are pulled from under the desktop and a computer-equipped instructor's station integrates an Elmo projection unit with an overhead color projection system. This design gives each student immediate access to mathematics software while allowing for maximum Inside Insights flexibility of instruction . A/unmet Form .......................,................... back cover Heal also worked with Alwnn et Responses ...........................,................... 17 Dr. Larry Cannon, Department of Alumnus Honors Father ......................................... 7 Mathematics and Statistics, to Awards, Honors and Publications ........................ 15 develop an interactive, computerCalendar .................................................................. 7 Class Reunions: 1938, 1948 and 1958 .................. 16 based learning environment for College Coff ee Break .............................................. 10 precalculus . Together they develCommencement A ctivities....................................... 9 oped highly interactive concept Expanding Your Horizons Conference .................. 12 tutorials which "truly engage and Gordon Research Conferences ............................... 14 Grant Funds Currirnlum Expansion ..................... 4 invol ve students," says Heal . "In In Memoriam: Dr. Reed Warren ............................. 6 many ways," he continues, "the MacMahon's Musings ............................................ 1 computer-based learning environReaders' Survey ..................................................... 19 ment becomes the student's own Science Learning Center Nears Reality .................. 2 Support of tile College ............................................. 5 Technology-Enhanced Learning .............................. 1

LEARNING ... Continued on page 8


Collegeof Science

The Eccles Science Learning Center (foreground) and WidtsoeHall (background) will join Sherwin Maeser Laboratory(left) to serveas the catalytic center of the Collegeof Sciencelearning facilities.

Science Learning Center Nears Reality As construction of the state-funded new Widstoe Hall progresses, the financial cornerstones are falling into place for the Science Learning Center that will replace old Widstoe Hall . The new Science Leaming Center will be built where Widstoe Hall now stands and will offer the opportunity for seamless integration of technology into science instruction at USU, as well as provide a gathering place for students, faculty and visitors to the University. The Science Learning Center, which will be joined to new Widstoe Hall by an atrium, will encompass an auditorium, a computer lab, two flexible classrooms each accommodating 80 to 100 students, student group project conference facilities, a media prep room, a prep wet lab, and department lockers for instructional material storage. The centerpiece of the Learning Center will be the 500-seat auditorium. The auditorium will be equipped with a computer port at every chair, an electronic chalkboard, a demonstration bench fitted with a separate air-handling system, blast protection, and cameras to project work done on the bench to every student in the facility. All slides projected on the electronic blackboard will be downloadable via the individual computer ports, and two-way electronic interrogation will be possible between the instructor and each student. Satellite uplink will allow worldwide information sharing . In the flexible classrooms, group learning tables will provide computer connections, will be easily moveable, and will encourage individual investigation of principles discussed in class. Student group conference rooms will provide space for study groups, group learning projects and student interaction.

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Insights Dean Jim MacMahon hope s both the atrium and the computer lab will be accessible twenty-four hours a day. "The atrium will give students an attractive place to study or take a break from project work," MacMahon says. An area outside the auditorium will provide space for collegial meetings and receptions. Construction of the Learning Center will begin after chemists move from the old Widtsoe Hall to the new Widtsoe Hall . The George S. and Dolores Dore Eccles Foundation has offered a $3 million challenge grant for construction of the new Science Learning Center, which will be named the Eccles Science Learning Center. An additional $1.5 million remains to be acquired by the College of Science. The Eccles Science Learning Center will benefit all students at USU, regardless of their major. Faculty members agree that learning and instruction has been profoundly impacted by the integration of technology into instructional practices (see related story on technology-enhanced education). USU students must have the opportunity to investigate concepts and to handle complicated problem-solving situations made possible by technology. Without technology , "we could only present simple problems which are at best contrived versions of real world problems," says Joe Koebbe of the Department of Mathematics and Statistics. In addition to expanding problemsolving possibilities, technology broadens learning opportunities. Students with an investigatory learning style are able to explore concepts and theories; modeling in various disciplines becomes possible ; and students are able to question instructors, even in large lecture classes. As the College of Science enters the final phase of fund-raising for the project, indi viduals and corporations will be offered the opportunity to have a direct impact on the intellectual life of the College and on the future of all USU students. Several significant naming po ssibilitie s are still available on the Eccles Science Learning Center . The three-year project timetable has begun, and funding mu st be in plac e soon. In 2001, the Eccles Science Learning Center will open and learning po ssibilitie s at USU will be significantl y enhanced. ♌

A 500-seat auditoriumwill provide state-of-the-art computer access,electronic media capabilityand camera-equipped demonstrationf acilities to all USU students.

The three-storyatriu111 connecting WidtsoeHall and the EcclesScienceLearningCenter will provide students with nn attractiveplaceto study or takea breakfrom projectwork.

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Department of Education Grant Funds Science Curriculum Expansion It's just past dusk as the hunter brings in his latest kill, a cougar, to be checked by the conservation officer. Cougars cannot be killed after dusk or before dawn, and it is the officer's job to verify the approximate time of death. Using a mathematical model of biological cooling, the officer is able to verify when the animal was killed. This same type of problem is faced by conservation officers daily, and is the model for a new lab in a Utah State University biology class. The cougar cooling problem, as Dr. Jim Haefner, associate professor of biology, calls it, was developed in an attempt to integrate more quantitative thinking into the biology curriculum and is only one of many biomath labs that will soon be used. Thanks to a recent Fund to Increase Post Secondary Education (FIPSE) grant from the US Department of Education, the USU biology and mathematics and statistics departments will be receiving $100,000 per year for the next three years to develop classes that use math and require students to integrate learning from other disciplines into biology. "We created this program because we were dissatisfied with the ability of students to use quantitative methods. Students were not getting a high quality education because they didn't have practice using math skills," Haefner says. "This is a pervasive problem across the nation."

One of the goals of the F/PSE labsis to teachmath and modelingconceptswith hands-onexperience. Here,Biology126 students participatein a lab to developa general model of a predatorforaging. Blindfoldedstudent Ryan Bradshawplays the part of a general predatorwhile his classmates the handlingand searchtimes with a stopwatch. determi11e

The program is being spearheaded by six faculty members: Alice Lindahl, Jim Haefner and Dick Mueller from the Department of Biology, and Joe Koebbe, Jim Powell and Jim Cangelosi from the Department of Mathematics and Statistics. Together these professors have identified eight or nine courses which would benefit from math model labs. For example, in the introductory classes the students will

MUSINGS ...

use math to study osmosis, cooling and photosynthesis. In the ornithology class, a mathematical model will be used to determine which types of birds are able to fly across the Gulf of Mexico to their wintering grounds in Central America. "Our philosophy for this program is to give students exposure early in their career and then repeatedly have FUNDS ... Continued

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some sort of research experience on a student's record of accomplishments. A summer research experience can be extremely valuable to a science-oriented student, so we are attempting to develop some summer scholarships. Of course, the faculty research grants also provide funds for some students, as do grants that are generated especially for education, such as the Howard Hughes Program in the Department of Biology. Finally, spring means graduation and I want to invite each of you to join us for the festivities. Late May and early June are ideal times to be on campus. If you will be near Logan during that period, let us know and join us as we celebrate the work of our graduates. It is even possible that the Widtsoe Hall building project will be more than merely a huge hole in the ground by then. Maybe not. At any rate, visit us when you can. Sincerely,

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Support of the College of Science Takes Many Forms As you have seen highlighted in the article about the Widtsoe Hall/Eccles Science Learning Center in this issue of Insights, the partnership between public and private entities for the betterment of the College of Science is critical. Imagine the Widtsoe Hall project without the Eccles Science Learning Center or vice versa. Without the State, Widtsoe would not have funding for construction, and without the private charitable support of numerous Eccles foundations and other collaborators, the Eccles Science Learning Center would not be built for the benefit of all 20,000 students at

The following College of Science giving programs provide everyone with a way to make a charitable contribution in support of the College and to benefit our students: • The Annual Fund Campaign is the nucleus of our giving programs and uses both direct mail and phonathon appeals to encourage contributions. It solicits gifts of all amounts from alumni, friends, faculty and staff. In March of this year, you should have received the College's direct mail appeal. Subsequently, those of you we were able to reach by phone were also asked to participate with a gift. In either case, if you responded with a gift, thank you. If you have yet to do so, know that whenever you are able to make that gift and no matter the amount, your participation is needed and appreciated.

usu.

Did you know that only slightly more than one-third of the University's total operational budget comes from State tax appropriations? In truth, Utah State Universityand by extension our College-more closely approximates a State-assisted institution than a State-supported one. As such, the College's commitment to excellence in science education and research can be enhanced and dramatically strengthened with the help of increased private support from our alumni, friends, faculty, staff and others. This is not to say that we no longer need the State to provide us with tax appropriations. Rather, it acknowledges that a partnership between the State and private sources can accomplish more in collaboration than can be attained individually. You, our alumni and friends, represent the greatest potential for private support of the College of Science. Now, and in the years to come, the growing number of science majors in our College, fast approaching 2,000 students, need additional resources to be successful and competitive in our world. As a College committed to meeting the needs of our students, the most critical support we seek is in the form of unrestricted gifts or scholarship gifts.

• Planned gifts take the form of charitable bequests, life insurance, various trusts, appreciated real estate and securities, etc. Planned gifts are typically those gifts granted from one's assets rather than from one's income. Gifts such as this can be outright, but in most cases are deferred and therefore provide significant support for the future. • Endowment gifts provide a means of perpetual support and can be established outright or grown over a period of time. A gift contributed to create or enhance an endowed fund is "the gift that keeps on giving," as only a portion of the earnings generated from the endowment's investment are used to annually provide support for the fund's established purpose. Annual, planned, and memorial or special gifts can all be used to create or enhance an endowment benefiting the College of Science. • Memorials and special gifts can be made in someone's name or memory or for some other special purpose. Gifts of any size can be contributed at any time and can be one-time gifts designated for any purpose or on-going gifts to establish or enhance an endowment.

Regardless of the amount you are willing to contribute or the type of gift you may use, you can help

In this section of Insights, you will find a postage-paid reply envelope to request additional information on any of the giving programs mentioned here. Our Director of Development Jerome Davies is available to address your questions about these programs at (435) 797-3510. He can send you information by mail or will meet with you in person. We look forward to hearing from you. ♦

support your College's collective commitment to excellence in science education and research.

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In Memoriam: Dr. Reed Warren Utah, to fund research in these areas. Scientist, teacher, mentor and friend, Dr. Reed Warren died "He had an extensive, broad understanding of immunol26 January 1998 following a valiant fight against cancer of the ogy. Immunology is a rapidly growing field, and he kept on top kidney. of it, a challenge for any scientist," Dr. Sidwell said. Internationally recognized for his research in immunology, Roger Burger, research associate on Dr. Warren's research Dr. Warren left a gap at Utah State University that will be team, first met Dr. Warren ten years ago. For five years, Burger difficult to fill. Dr. Warren had dual appointments with the worked with Dr. Warren and Dr. Sidwell Department of Biology and the Center for studying potential drugs to treat AIDS. For Persons with Disabilities. Renowned for his the last five years, Burger had worked with breakthroughs in the study of autism and Warren on his autism research at the Dr. attention deficit hyperactivity disorder "His greatest quality was his ability to CPD. (ADHD), Dr. Warren was also a highly what we would find in the lab. beyond see respected immunology teacher . to put this in the greater picable was He One of Dr. Warren's associates, Dr. Bob said. Burger ture," Sidwell, director ofUSU's Institute for magnitude of his work, Dr. the Despite Antiviral Research, said, "He was very excited sight of basic qualities that lost never Warren about what he was doing. He was a good He was humble, caring developed. had he writer, a good speaker, and an excellent very seldom took "He supportive. and teacher. He had a lot of care for individuals." worker, but he was hard a was He vacation. Raised and educated in Utah, his time," with open and free very also Dr. Warren's influence in the medical commusaid. Burger nity reached around the world. He was born His work ethic, however, never derailed in Price, Utah, and was awarded bachelor and from what mattered most. "Even him doctorate degrees by the University of Utah. Dr. Reed Warren all researchers strive for perfection, though He worked as a research scientist at the Fred biology research seldom are," in studies Hutchinson Research Center in Seattle, was not upset by imperfecWarren Dr. However, said. Burger Washington, before coming to Utah State University in 1982. wrong. "He would say there went experiments when even tion, Early in his career, Dr. Warren conducted studies that from them." learned be to something always was showed immune abnormalities were involved in autism. At the was his wife, Louise, associates closest Warren's Dr. of One time he discovered this, few scientists had even considered the "His wife has nurse. Odell's Dr. as him with worked who possibility. Five years ago, other findings began to confirm instrumental in very been has and him, with worked always what Dr. Warren had found much earlier. In the last year and a a lot," Burger her on depended He research. the with helping half, he had become an internationally recognized leader in the patients, ADHD-diagnosed of homes the visits She said. field and in 1995 he spoke at the International Conference on collecting blood samples from them and their families, and Autism in Tronia, Sicily. In 1996 he was listed in Who'sWho in the detailed medical records of these families. "She manages invitation the West,and his research had recently earned him an all over the state collecting blood and gathering go would Society to give the keynote address at the International Autism Burger said. information," Conference to be held in London this year. said Dr. Warren liked being at Utah State Warren Mrs. there "Before Reed started this work in the early 1980s, he was able to really focus on his research. He "Here University. have were isolated reports suggesting that autistic children class. He enjoyed his students very much, his teaching enjoyed really to immunological abnormalities, but Reed was the first with other colleagues," she said. association his enjoyed and the at pursue these ideas in detail. No one had looked so closely the research he started: Dr. Odell, continue to trying all "We're Logan possible role of infection," said Dr. J. Dennis Odell, a going to keep the projects and are We Burger. Dr. Sidwell, Dr. pediatrician, medical director at CPD, and adjunct associate going." started he grants magaprofessor in biology, in a recent article in USU's alumni Working with other USU professors, Dr. Warren secured zine. grant from the Howard Hughes Foundation that another developmentally a Dr. Warren's own experience with undergraduate students to research through multiintroduced often are children such disabled son alerted him to the fact that experiences. Dr. Warren had a profound affect laboratory year health other and sick; their ear infections, strep infections, mentored. In a letter to the USU Statesman, he students the on he immunologist, an problems linger or reoccur frequently. As student in the program, wrote: "This patient a Gardner, Jennifer developmento related be might wondered if this phenomenon supported me and undergraduates like man unobtrusive and autism. at specifically looking started tal problems. In 1983 he believe in our abilities to make signifito us taught and myself of Institute National the from grants Dr. Warren obtained two and society in general ... He was research to contributions cant Sciences Health Oregon with Health, one in collaboration greatly missed." ♌ be will and us to inspiration an of University the with collaboration in other the and University 6


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Alumnus Honors Father with Endowed Scholarship Dr. J. Keith Sorenson is listed as a 1945 graduate of USU, with a major in predental biology. He was awarded his DDS by Northwestern University in Illinois in 1944. While those dates may seem to be an error, remember there was a war going on. "I started my undergraduate work in 1938," says Dr. Sorenson, "and went to school straight through, summers and all." In 1941 he was accepted at Northwestern University and began postgraduate work. Pearl Harbor was bombed in December. "Everything was speeded up then," says Dr. Sorenson. He was given a reserve commission in the army, summer vacations were eliminated, and he finished dental school in three years. In 1944 Dr. Sorenson began his active service, a 1st lieutenant, and served his first year at Bushnell Hospital at Brigham City, Utah. "That was wonderful for me," he says. Science credits he had earned at Northwestern were applied to his USU requirements, and he was awarded his BS that year. The following year the newly promoted Captain Sorenson was posted to Germany, where he served with the 776th Dental Operations Detachment. The postwar years found Dr. Sorenson and his wife, Nancy, once again in the Chicago area . Dr. Sorenson had a private practice in the Loop, and the growing Dr.J.Keith Sorenson family lived in Evanston, an hour commute from Dr. Sorenson's office. In 1952, the family moved to Salt Lake City. "I sold a good practice to move to Salt Lake and start over," says Dr. Sorenson. "For a while I wondered if I'd made a mistake. But I'm glad we took the chance and made the move. It's been wonderful." Dr. Sorenson took another chance when he turned fifty and retired to pursue other business interests. But this move, too, is one he is glad he made. "I actually started at USU as a business major," he says. "I enjoyed both my careers. I've been a lucky guy." Now seventy-seven, Dr. Sorenson winters with Nancy in the San Diego area near his son, Jim, and Jim's family and is still a man of wide and varied interests. He is a member of the San Diego Zoological Society-"! never tire of visiting the San Diego Zoo" -and a season ticket holder to the opera. Summers are spent in the family cabin near Yellowstone with the two Sorenson daughters, Ann and Jean, and their families (the Sorensons have six grandchildren in all). Dr. Sorenson's most recent financial move has been the establishment of an endowed scholarship honoring his father. The Charles J. Sorenson Scholarship will be awarded each year to a College of Science student who exhibits academic and community leadership and financial need. Professor Charles Sorenson was a research entomologist at the USU Experiment Station from 1926 to 1954. "My dad was the greatest believer in education," says Dr. 1998 US U/Coll ege of Science Calend ar Sorenson. "He was a kind, good teacher and a wonderful Science Week ................................................................ 11-15 May father . The best thing I could do to honor him is to support College Awards Program ................................................. 15 May young people." Aggie Day .......................................................................... 15 May Dr. Keith Sorenson got his strong belief in the value of University Hooding Ceremony ....................................... 5 June the whole person from his father, and that belief is reCollege of Science Graduation Open House ................. 5 June flected in the scholarship award requirements. "There's University Graduation ...................................................... 6 June more to life than straight As," says Dr. Sorenson . College Graduation ........................................................... 6 June A proud USU family, Charles Sorenson (BS 1914, MS Aggie Lagoon Day ............................................................. 16 July 1927), both Sorenson sons, and all three of Keith Class Reunions: 1938, '48, '58 ...................................... 17-19 July Sorenson's children are USU alums. It is a measure of Aggie Hogle Zoo Day ................................................... 1 August Keith Sorenson's belief in the value of individual decision Fall Semester Begins .................................................... 31 August that he views the prospect of his grandchildren attending Aggie Family Day .................................................... 5 September other colleges and universities with equanimity. "We all Homecoming ............................................................... 17 October live our own lives," he says. Science Week .......................................................... 19-23 October Dr. Sorenson has certainly lived his. ♌ Expanding Your Horizons Conference ............... 14 November

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Collegeof Science LEARNING ... personal mathematics laboratory." The user interface provides immediate connection with the mathematical concepts and structure. Slider bars, graphing tools, buttons, drag-and-drop mouse manipulations and simple keyboard input allow students to explore and manipulate, encouraging experimentation and the self-discovery of mathematical concepts. The precalculus project is distributed via CD-ROM, and is available over the USU computer network. Heal, Cannon, Dorward and Dr. Richard Wellman, a visiting professor in the Department of Mathematics and Statistics, are presently exporting their curriculum tools to JA~A, where the tools will be available in the form of applets which can then be embedded in a Web page. There they can be used along with additional math narrative and two-way instruction by individual students and in distance learning classes via the Web, and in technology classrooms and labs. Students will be able to communicate mathematically using standard mathematical language and the JAVA math editor developed by the team. This summer, Cannon, Heal and Wellman will introduce their technology-based instruction to K-8 in-service math teachers in North Carolina and Ohio as part of a NASA educational project. "We believe technology can help students learn mathematical concepts in ways that have never before been possible," says Heal, and he quotes Jacob T. Schwartz: "'The long-term impact will be as significant as Gutenberg's printing press."' Chr~ Coray mirrors this enthusiasm. He is presently developmg three-dimensional illustrations to enhance multivariable calculus learning. The illustrations, says Coray, are interactive, allowing students or instructors to highlight and color individual aspects of the illustration, to reduce the object to a skeleton or to change perspective . Instructors were previously limited to two-dimensional representations of complex c_oncepts, and were forced to modify rudimentary representations on the blackboard during the course of a class. "We usually ended up with a mess," says Coray. The seamless generation of illustrations of, for instance, vector fields, allows the instructor to stress important points without losing the value of the visualization, says Coray. And, he continues, the speed of computer-enhanced calculations allows both students and researchers to investigate realms previously closed to them. Instructor preparation is key to the successful integration of technology into the classroom, says Coray. If the technology becomes an interruption rather than a tool, he warns, the class is lost. Dr. Joe Koebbe, too, has found preparation key to the s~ccessful integration of technology and the learning process. His Math 462 and 463 are computer-aided mathematics courses. One, Math 462, was developed for preservice secondary mathematics teachers. It is taught without a book, because Koebbe has not been able to find one appropriate to the class's content. Developing materials appropriate for the class has been both time consuming and key to the success of the program , says Koebbe. In fact, he and co-author Dr. Jim Powell are contacting publishers about the text they have written.

Both Math 462 and Math 463, Computer-Aided Mathematics for Scientists and Engineers, allow students to integrate knowledge from the undergraduate curriculum to solve applied problems presented in class. Both classes require s~der:its t? solve fairly complicated problems and to develop VISualizations. Each education major must also develop an innovative computer-enhanced method of teaching a mathematical concept, while students in the science and engineering section must solve complicated problems and include some analysis in their presentations. Koebbe says, "The software allows them to understand complicated mathematical concepts very quickly." "Students who are not able to use computers in problem sol~g in the future will be at a significant disadvantage relative to students who have experience with computer-aided problem solving," says Koebbe. The use of computer-aided instruction will continue to increase, maintains Koebbe, and students will need to develop skills in formulating problems in a way which lends itself to computer implementation. Further, once a computer has produced a set of results, students must know how those results should be interpreted and what is the next step in the problem-solving process. _ D~. Pete Kolesar, Department of Geology, was the principal mvestigator on a HETI grant to develop a package of CDs to supplement an introductory geology class. One of the newly developed CDs deals with the possibility of the occurrence of a major earthquake in Utah. Students accessing the CD can examine the general plate tectonic settings in which earthquakes occur; examine the 1995 earthquake in Kobe, Japan, in some detail, exploring the particular plate tectonic setting for that quake; examine some of the damage that Kobe experienced as a result of the quake; and evaluate various areas of Utah for their earthquake potential. The CD, along with another CD developed in the College of Science, an annotated photo album of geologic features and processes found in Utah and surrounding states, is available to all on-campus student computer labs on the geology department server. The two CDs have been sent to the geology departments of all nine of the Utah System of Higher Education campuses as part of a package to supplement introductory geology classes. Kolesar sounds a note of caution echoed by several other College of Science faculty members and familiarto all information technology users: technology in education will come at a high cost. "The technology changes so¡rapidly that state-of-the~t eq~pment is out of date in a year or two," Kolesar says, and ates his purchase of an authoring program to produce the CDs. Within a year, he says, a new version of the program was released, and the two versions were not entirely compatible . "I was lucky an older version of the program was still available so I could complete the project without having to completely reprogram the CDs. What happens if we don't continually upgrade? And who will pay if we do upgrade?" College of Science faculty members agree, however, with comparison of Gutenberg 's press with the advent of ~war~'s information technology. The revolution in educational practices engendered _b~ techn?logy will be profound and permanent as knowled~e 1s mcreasmgly shared in ways not bound by place, space or time. ♌ 8


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.---------Commencement

One Hundred and Fifth Annual Commencementof Utah State University will be held 5 & 6 June FRIDAY, 5 JUNE ROTC Commissioning Ceremony 9:00 a.m., Eccles Conference Center Auditorium, Reception follows Spouse Recognition Ceremony 11:30 a.m., Chase Fine Arts Center, Morgan Theatre Hooding Ceremony for Master's and Doctoral Degree Candidates 12:30 p.m., Assembly of Candidates, Tunnel of the Dee Glen Smith Spectrum 1:30 p.m., Dee Glen Smith Spectrum College of Science Open House 3:30 - 5:00 p.m., Science Engineering Research Building Patio. Alums are encouraged to attend. Graduation Dinner and Concert 6:00 - 8:00 p.m., (Tickets required) Graduation Dinner, Taggart Student Center, Evan N. Stevenson Ballroom 8:00 p.m. (Free concert, tickets required) Collage of Sounds Concert, Chase Fine Arts Center, Kent Concert Hall SATURDAY, 6 JUNE Assemble 8:00 a.m., Taggart Student Center, Juniper Lounge for Graduate Students the University Quadrangle for Undergraduate Students Academic Procession 8:30 a.m., Taggart Student Center and University Quadrangle to Dee Glen Smith Spectrum Commencement Ceremony 9:30 a.m., Dee Glen Smith Spectrum. Mary L. Cleave will give the keynote address. Dr. Cleavereceiveda masterof sciencein microbialecologyand a doctoratein civil and euvironmentalengineeringfrom Utah State University in 1975 and 1979, respectively.Cleavewill be awardedan honorarydegree,Doctorof Engineering Science.She has receivedfive NASA recognitionmedalsandflown aboardthe Shuttle Atlantis and the OrbiterAtlantis (whereshe deployedthe Magellan Venus explorationspacecraft).In 1991 Cleaveleft JohnsonSpaceCenter to join NASA's GoddardSpaceFlight Center (GSFC)to work in the HydrosphericProcessesLaboratory.She is working 011 Earth observations at GSFC becauseof her concernsthat human activity is changing t/zesurfaceof the earth too rapidly,based011 the changesshe observedin thefour years betweenher two spaceflights. Cleaveis the projectmanagerfor the Sen-viewing Wide Field-of-viewSensor (SeaWiFS),an oceancolorsensor that is monitoringglobalmarine chlorophyll-aconcentration. SeaWiFSlaunchedOil 1 August 1997 and is currently operatingsuccessfullyon orbit. College of Science Graduation Ceremony 12:00 Noon, Taggart Student Center, Evan N. Stevenson Ballroom Alumni Graduation Picnic 11:00 a.m. - 2:30 p.rn., University HPER Field (Tickets required) Alumni Reception 11:00 a.rn. - 3:00 p.rn., Open House, David B. Haight Alumni Center ForadditionalinformationregardingCommencement see http://www.usu.edu/~edserve/commence98/

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Jim Watson, mathematicsand statistics,and AssociateDean TonyBringhurst, Collegeof Science

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Collegeof Science

Expanding Your Horizons Plans 12th USU Conference Expanding Your Horizons in Science and Mathematics (EYH) will hold its 12th annual conference at USU on 14 November 1998. Part of a national series of conferences designed to nurture girls' interest in science and encourage them to consider science and math career options, the local 1998 EYH presentation will focus on rockets. The keynote speaker will once again be Jayceen CravenNicholson of the Hansen Planetarium, who has earned the accolades of former participants. Born and raised in Price, Utah, Craven-Nicholson joined the planetarium staff in 1989 as educational technician and has taught lessons in electricity and rocketry. Currently, she is the volunteer coordinator for the planetarium. She is also an actor 1997 EYH participantexploresdentalcare with the Salt Lake Acting Company and Park City Performances and can be seen in the movie A Life Less Ordinary. The day-long conference consists of a keynote address and handson workshops for girls in grades 6-9. The $12 fee includes all activities, ,i:-/1,, 11uli g-Cf}rrtJIJ lunch and a T-shirt. A concurrent program for adults will discuss m< ;,ucila/ challenges faced by girls as they study mathematics and science. Last year, workshops for girls included sessions on marine biology, lo a/It ml rm veterinary practice, physical therapy, and space exploration rescue. OJrn.JforrJ<. Adult workshops included a discussion of college preparation and finance, rapport building tips, and an exploration of how gender ;ll l,ollot of oro expectations may affect young women. Similar workshops will be J.9.987lr.lk!J< offfi.io1n Cfjwrlual<J offered at the 1998 conference. EYH workshop leaders are all volunteers. The conference is funded through private contributions and with the support of the :'!hMa!I College of Science. Expanding Your Horizons is the flagship program of the Matl1./ :;J,uuJ.9.98 Science Network, a nonprofit educational organization. EYH seeks to .J:J() J.m. - .3:00 J.m. provide girls and young women with enthusiastic, positive women role models in the fields of science and mathematics, and to support ffi-;rnr< ~llflb1cobl!J ,fl<Jaurl, Jl,,;/,/h,!J;-Jl,/;o girls and young women as they study math and science. .<Jna1J<of ;11rk1110,Iwu,lha Information regarding the USU Expanding Your Horizons program is available on the USU Website at http:/ /www.usu.edu/ fl,< C]firn .JCiuv,r-;///,,-<l,"'/r/ -horizons/horizons.html. For further information or to request h1 llu · registration materials, please contact Sue Morgan in the Department of Geology at (435)797-2176 or famorgan@cc.usu.edu. Information about ffik11a . <t,'.,l!J;nuti"{j;ll_-'Mau·h Ylu;/d;,I{/ EYH programs offered on various dates at more than 120 locations 3loomJ(J/ti across the United States can be found on the Math/Science Network Website at http:/ /msnucleus.org. ♦ 12


Insights FUNDS: ..

them exposed to this method of doing science," Haefner says. Students will see these types of math labs at least four times as they progress through their curriculum. Along with enhancing the biology courses at USU, biology and math professors will be teaching workshops for secondary education teachers. In the workshops, teachers will be taught methods of teaching math skills in biology as well as how to design labs that reinforce these skills, Lindahl says. To help evaluate their usefulness, the workshops will be taught for the first time this summer to local teachers. The following summer, they will be offered to teachers throughout Utah. The workshops will also be offered on the Internet with supplementary data sources, biomath lab ideas and other resources for teachers. "The whole idea is to increase quantitative thinking both up and down from where we are in the academic setting," says Lindahl. USU biology professors hope that by teaching students in secondary schools to think quantitatively they will be better prepared for college and the work force. "Integrating science and math will become very important in the future," Haefner says . "There has not been enough training for people to go into the work force and deal with problems there." Besides integrating new math model labs in biology classes and teaching secondary education teachers new curriculum ideas, the biology and ma thema tics and statistics departments also developed a new bioma th minor this year. The minor encourages students in both departments to take more classes in the other departments and

strengthen their science backgrounds. It also brings biology and mathematics students together in an investigative biology lab setting to model real biological systems. Computer literacy is another aspect the FIPSE project is working on. Significant computer hardware contributions to the project have been made by Sun Microsystems, helping to make computer workshops in the classroom possible. Webpages are being developed by Koebbe to assist student learning. The pages will allow students in the introductory classes to brush up their algebra skills or get extra help. "It will help the students in big classes to feel like they can get help, though not personal, through the computers," Lindahl said. While these programs only began in the fall, Haefner said they are already getting feedback. Some is very positive, but they have heard students complaining that introductory biology should be biology not math. However, the faculty is working to change these notions. The math being used in the

labs is taught in high school, but it is often not put into context and more often has been forgotten by the students. "When the math is put into context, students have a reason to learn it," Haefner said. They also emphasize that students will see the math again in their biology studies, and it is part of biology that needs to be learned. The biology and mathematics and statistics departments have also joined with six other departments to carry this emphasis on math into the graduate program. Recently, a proposal to the National Science Foundation was submitted to provide financial support to students to study mathematical models of biological spatial dynamics. This facet of the program is being headed by Dean Jim MacMahon. Lindahl says, "These improvements will make the students more competitive when they get out; it will make them better able to compete with people from other institutions." â&#x2122;Ś

CraigCrookstontimes his classmateKeith Batty as lieplays the pa~tof~ predator. ClassmatesDebbieStringhamand My/1eThompsonwatch and assist with the lab.

13


Collegeof Science

Department of Chemistry and Biochemistry Recognized at Gordon Research Conferences The Utah State University Department of Chemistry and Biochemistry is quickly becoming recognized as an international leader in the field of metallobiochemistry. This recognition is due in part to the fact that many USU faculty and graduate students are speaking and chairing prestigious Gordon Research Conferences throughout the world. These conferences were initiated by Dr. Neil E. Gordon of Johns Hopkms University in the 1920s to establish good, direct communication between scientists in the areas of biological, chemical and physical sciences. Scientists meet for a week of intense discussion and examination of the most advanced aspects of their field. To encourage open communication, information presented and ideas discussed are not for public use. The recording of lectures by any means and printed reference to Gordon Research Conference papers and discussions is prohibited. Dr. Lance Seefeldt, assistant professor of biochemistry, has been one of the professors participating actively in these conferences. Seefeldt will serve as vice chair of the Nitrogen Fixation Conference from 28 June to 3 July in New Hampshire, and he will act as chair at the succeeding conference. The chair of a Gordon Research Conference is in charge of choosing the speakers, organizing the scientific program, and selecting those who will be attending. The chair is also in charge of fund-raising. USU graduate student William Lanzilotta will also be speakmg at that conference. "This is one of the most prestigious of scientific meetings. People attend by invitation only," Seefeldt said. Facilitators of the Gordon Research Conferences like to keep the number of participants at each conference around 100 people. Having small groups helps keep everyone together and gives each the opportunity to speak. This is one of the conference's most important features, Seefeldt said. Seefeldt understands the workmgs of the conferences. At the Gordon Research Conference on Metals and Biology in January 1998, he and assistant professor Rick Holz, also from the USU chemistry and biochemistry department, spoke. Seefeldt also served as session chair and speaker at the Nitrogen Fixation Conference in 1996. One of the newest features of the Gordon Research Conferences is a seminar on metals and biology for postdoctoral and graduate students. In only its third year, Matt Ryle, a USU graduate student, was named as the chair at the conference in January 1998 for the next conference in 1999. USU was well represented at the 1998 conference by its younger scientists. Lanzilotta, Ryle and postdoctoral fellow Dr. Brian Bennett spoke at the conference, and graduate student Ventris D'Sousa presented a poster. This conference has long been one of the most popular, Seefeldt said, and

graduate, postdoctoral students are often left out because of the cap on attendance. The graduate conference is held at roughly the same time as the other conference, overlapping by one day to allow graduate students and other partici- · pants to share ideas. "Attending these conferences is a real recognition of the sort of strength that has developed in the chemistry and biochemistry department at USU," Seefeldt said. "It is reflected in the fact that so many faculty and graduate students are chairing and speaking at these conferences. Even being chosen to attend is a big deal." ♦

The 1997-98 College of Science Awards have just been announced. Teacher of the Year Adele Cutler ♦

Advisor of the Year Jrunes Cangelosi ♦

Researcher of the Year Zhi Qiang Wang ♦

Valedictorian Carrie Liechty ♦

Scholar of the Year Nanette Cropper Jensen ♦

Graduate Student Teacher of the Year Jared R. Burch ♦

Graduate Student Researcher of the Year Jeffrey Allen

14


Insights

Awards, Honors and Publications Insights welcomesnews of alumni awardsand publications.Pleasemailannouncementsto Insights, UtahState University,Collegeof Science,Officeof the Dean,4400 Old Main

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WorldOrderby Andrew Goliszek (MS 1981, PhD 1983, Biology) is a thriller revolving around psychochemical warfare. WorldOrderis his second novel. Hardcover, Forge Press, distributed by St. Martin's Press.

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Awards and Honors Donald Cooley and Stephen Clyde, Department of Computer Science, received a . provid· de har~thware $26d2,00ftw0 equip£ment gr ant frksom Hewlett Packarfd.ciliThe grant willdin an so are or an 18-wor tation computing a · ·ty, provi g stu ents WI an integrated laboratory for studying data and computer communications, networking protocols, distributed operating systems, client/ server architectures, CORBA, network security, object-oriented development environments and distributed databases.

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J.R. Dennison, Department of Physics, was awarded a three-year NASA grant through the Space Environments and Effects Program to study the electronic properties of spacecraft materials. The effects of the space environment will be simulated in a state-ofthe-art ultra-high vacuum surface analysis chamber at USU. The measured materials' properties will be used in conjunction with existing modeling programs to predict the nature and extent of spacecraft charging, a phenomenon responsible for numerous onboard electronics glitches and even failure of entire satellites.

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James P. Evans, Kevin Hestir and Thomas E. Lachmar, Department of Geology, received a $313,000 three-year grant to examine how faults affect the flow of water in aquifers near the earth's surface. The work will lead to better techniques of interpreting the directions and amounts of water flow in rocks that have been faulted and fractured.

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Darrell S. Kaufman, Department of Geology, received a $30,000 grant from the Petroleum Research Fund of the American Chemical Society. Kaufman's work will investigate geochemical processes that govern protein diagenesis and its application as a geochronological tool. bv

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Thomas Wilkerson, Department of Physics and Center for Atmospheric and Space Sciences, visited David Guerra at Western Maryland College to make atmospheric measurements using a hologram-based lidar system similar to one being developed at USU under a grant from NASA's Goddard Space Center. Hologram adaptations of USU lidar systems will come online in early 1998.

Publications:non-fiction

PocketGuideto AccompanyPrinciples of Physics by Smvay by V. Gordon Lind, Department of Physics, is a capsule of the textbook and a notebook with problem solving hints. Paperback, Saunders College Publishing, a division of Harcourt Brace College Publishers. ♦

15


Collegeof Science

1JS1J _Afumni

ReunionJ

For the Classes of 1938, 1948 & 1958 17-19 July 1998 Utah State University will be hosting class reunions this summer for all graduates of the classes of 1938, 1948 and 1958. USU science graduatesfrom these years are listed below. If you are not listed and are a graduate of one of these classes, or know of someone who is, please contact USU A lumni Relations. For more information on the class reunions, please contact Alumni Relations at either 1-800-291-ALUMor email them at alumni@cc.usu.edu.

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60 Yearj ~-50 Yearj ~-40Yearj

1938 ~

1948 ~

1958 ~

William T. Adams D. Merlin Archibald Joe Carling Herbert B. Currier Gene W. Greenhalgh Almon S. Harmon Donald E. Hartvigsen Williard K. Hill Linden J. Leatham Herbert Newby Max S. Oldham George Piranian Richard Preston Martin L. Robinette William Scholes Clyde F. Smith Royal H. Sorensen Madison Thomas C. Ray Thompson Elvin Wayment Vern Weatherston Charles W. Ziemer

Glenn B. Bergeson Robert B. Bradshaw Franklin Brough Jack Chatelain K. LeRoi Nelson Edward H. O'Donnell Seletta M. Pitcher Parker P. Pratt Wayne Rich Wendell 0. Rich Reed S. Roberts Richard J. Shaw J. LeGrande Shupe Raymond M. Turner Gordon A. VanEpps Stephen Wood John Worley

Jam.es W. Baldwin Neil B. Ballif Gwen H. Barfuss Roger Beckstead Stanley Beus Claude Brown Lawrence 0. Cannon Lee G. Cantwell Demont Christiansen Lee R. Chugg Glen W. Clark Wayne N. Clark William Clark Robert E. Dolph, Jr. Jerald L. Fawcett Lyman Fluckiger Clair Gamer Ronald H. Gelnett Bert Gividen Don F. Gowans Darrell Graff Ronald H. Gunther Darwin R. Halling Richard A. Heckman Leon D. Hicken Larry Hyatt Cecil B. Jacobson E. F. Legner

16

Jerry Martin John C. McDaniel LaRue W. Miller Rich Mitchell James E. Mohr Larry R. Moncur Robert George Mortimer Albert J. Munk Murray Nichols Gerald L. Nielsen Ruth Lemon Novak Candland L. Olsen Kent W. Payne Duane Phippen Ronald R. Potter Ronald D. Ransom John D. Rice Donald Richins Thomas J. Rocchio Fred H. Ross Clyde M. Senger Orval Sorensen William E. Strobelt Lindsey K. Thomas, Jr. Hal Thomason Keith Tilley Allen D. Willard Emery H. Willes, Jr.


Insights Tariq Abdul Rahman Kergaye (MS 1963, Civil Engineering/Math) emigrated to the United States from Iraq in 1958. He worked for the State of Utah in the Department of Transportation following his graduation until his retirement. He presently lives in Salt Lake City, Utah.

Alumnet Responses 1940s Glen J. Behling (BS 1942, Bacteriology /Biochemistry) is a retired chemist living in Utah. His busy professional life, spent with DuPont and General Electric, took him all over the country until his retirement in 1982. He married Beverly Clement in 1946, and the two have seven children-four boys and three girls-thirty-four grandchildren, and one greatgrandchild.

John A. Cox (BA 1965, Entomology) received a second degree from the Evergreen State College in 1987. He is employed by the Centers for Disease Control and Prevention and is the STD Program Manager for the City of Milwaukee in Wisconsin . Edwin M. Duffy (BS 1969, Geology) is with the Reliance National Insurance Company in Texas.

Maxine Burgoyne Laser (BS 1944, Bacteriology /Biochemistry) taught at Montpelier High School, USU and USC following graduation. She became a full-time homemaker after she married T.J.Laser (1949), who taught at Davis High School. The two raised six children, three of whom attended USU (John Laser, BS 1971; Wendy Thueson, BA 1977; and Carol Willis), and have seventeen grandchildren.

1970s John I. Mosher (PhD 1972, Zoology) holds professor emeritus status in biological sciences at the SUNY College at Brockport. He enjoys outdoor activities and teaches stress reduction classes and developing spirituality classes. His wife, Constance, is a professional artist, painting local scenes and accepting commissions.

Robert Hammond (BS 1948, MS 1952, Mathematics) is retired and lives in Logan, Utah.

Ken Rees (BS 1972, Geology) was awarded an MAS in 1989 by the Embry Aeronautical University. He is a Lt. Col., USAF (retired, 1992), and earned a teaching certificate at UNLV. He is presently a graduate student at UNLV working toward a master of education degree and is teaching at Becker Middle School in Las Vegas.

Wilford R. Gardner, (BS 1949, Physics) was awarded an MS in 1951 and a PhD in 1953 from Iowa State University. He was a professor and administrator at University of California at Berkeley until his retirement. Elected to the National Academy of Sciences in 1983, he now serves as scientific advisor to governmental agencies and universities. He is a fellow of SSSA, AA.AS,and ASA, and chairs the NAS Committee on Soil Science. He continues to play the flute and was a member of the Riverside, California, Symphony Orchestra.

Douglas B. Tabor (BS 1974, Computer Science) is a technical account manager for Sun Microsystems Computer Corporation. He has been with Sun for seven years at an account doing $1 billion of Sun business. He and his wife, Deborah, enjoy flying their plane with their son. He also belongs to several amateur radio service organizations, including WeatherWatchers.

1950s Malcom Ross (BS 1951, Zoology) was awarded a PhD in geology from Harvard University in 1962. He worked with the US Geological Survey from 1961 to 1995, and now holds scientist emeritus status. His present research is on the health effects of mineral dusts; climate change; acid rain; and the crystal structure of minerals.

Guy Durrant (BS 1975, Biology) teaches science to grades 7 to 12 in the Daggett School District in Utah and is the technology director for the district. He is married with three daughters. The oldest is attending the University of Utah, and the two youngest are in high school.

Ferron L. Anderson (MS 1957, PhD 1963, Zoology) is professor emeritus at Brigham Young University. He taught and did research at the College of Veterinary Medicine at the University of Illinois from 1963 to 1967 and in the Department of Zoology at BYU from 1967 to 1997. His research on parasitic diseases led to cooperative projects in China from 1985 to 1993 and in Morocco from 1995 to 1998.

William T. Egar (BS 1978, Computer Science) is an information technology consultant with Integrated Systems Engineering, Incorporated, in Minnesota.

1980s Andrew Goliszek (MS 1981, PhD 1983, Biology) has been the principal investigator and coinvestigator on several grants from the National Institutes of Health, the most recent being a four-year grant involving neuroendocrine and cardiovascular functions. He is a professor and biomedical researcher at North Carolina A& T State University. His second novel has just been released (see Awards and Publications).

1960s Thomas D. Coppin (BS 1963, Premed Zoology) was awarded an MD by the University of Utah in 1967. He spent thirty years in the army before his retirement in 1993. A pathologist, he has directed medical laboratories for FHP and Paracelsus hospitals and is now with Columbia Lakewiew Hospital in Bountiful, Utah. Last May he was elected to a threeyear term as president of the Utah Society of Pathologists. 17


Collegeof Science Ingrid (Reynolds) Niesman (BS 1981, Biology) was awarded an MS in biology in 1984 by the University of Illinois Urbana. She is presently a research associate at the University of Arkansas Medical Science Department of Anatomy. She does spinal cord research and is also investigating Alzheimer's Disease.

Marianne (Hossner) Savola (BS 1991, Computer Science) is an engineer at Hewlett Packard. Still actively involved at USU, she is a member of the Industry Advisory Committee, works with the Department of Computer Science to acquire equipment grants, and participates in computer science camp, E-week and the career fair.

Matthew Davis (BS 1982, MS 1984, Geology) is vice president and owner of the Davis Food Company, a wholesale food redistribution company in Delaware. He is married with three children and enjoys skiing, tennis, golf, hiking, and life in general.

Jewel (Jarvis) Naffziger (BS 1992, Public Health) serves as an engineer officer with the army reserve. She is a licensed environmental health specialist senior at the South Central District Health Department for the State of Idaho. She is 12 credits away from a bachelor of music therapy degree.

Sven T. Berg (BS 1983, Chemistry) was awarded an MD in 1987 by Cornell University Medical College. He completed his residency in pediatrics at Wilford Hall USAF Medical Center in 1990 and served a fellowship in pediatric hematology/ oncology at St. Jude Research Hospital from 1990 to 1993. On the staH of Wilford Hall Medical Center in pediatrics from 1993 to 1995, he served as chief of pediatric hematology/ oncology at Wilford Hall from 1995 to 1997, and chief of the pediatric specialty clinic at Wright-Patterson Medical Center from 1996 to 1997. From 1997 to 1998 he served as squadron section commander of the 74th Medical Operations Squadron at WrightPatterson Air Force Base and was just selected deputy hospital commander and chief of the medical staH of the 65th Medical Group at Lajes Field, Azores. He is married to A'Lynn Johnson of Girard, Ohio, and they have five children.

R. Brent Crosbie (BS 1993, Public Health/Environmental Health) is a project manager with Thiokol Corporation in Utah. He is responsible for all elastomeric seals, nozzle metal hardware, fasteners and transportation support equipment for the space shuttle renewable solid rocket motor project.

Mike R. Jenkins (BS 1994, Biology) began his five-year residency in head, neck and oro-facial plastic surgery in 1989 at Oakland General Hospital in Madison Heights, Michigan. He is married and has two boys, ages three and a half years and eighteen months. Mahshid Asrari-Staheli (BS 1995, Public Health) is in his first year at Marquette University Dental School in Wisconsin. He is working toward a DDS. Jennifer Bumgardner (BS 1996, Biology) is attending Chicago Medical School.

Bill Cruff (BS 1983, Biology) is a teacher in the Weber

School District in Utah. For the past eight years, he has taught chemistry at Weber High School.

Brent Jensen (BS 1996, Public Health/Industrial Hygiene) is an industrial hygienist with Kennecott Utah Copper Corporation.

John Goodrich (BS 1986, Biology) was awarded a DDS in 1991 by Creighton University. He has a dental practice in Idaho and loves his profession. He and his wife have four childrenboy /girl/boy/ girl-ages five to twelve, who are home educated.

Shantel (Roberts) Stanworth (BS 1996, Public Health) is a customer service representative at Banner Distribution in West Valley, Utah. She was recently married to Nathan C. Stanworth.

Sheri Smith (BS 1986, MS 1990, Biology/ Applied Biology/ Entomology) is employed by the United States Forest Service as an entomologist. She covers four national forests, one national park and all other federal lands in northeastern California. She enjoys hiking, fishing, golfing and living in the mountains.

Tamara Stone (BS 1996, Biology) is a first year medical student at California College of Pediatric Medicine in San Francisco, California.

Julie Robinson (BS 1989, Chemistry, BS 1989, Biology) was awarded a PhD in 1996 by the University of Nevada, Reno. She is an ecologist with an interdisciplinary team of NASA scientists at the Johnson Space Center. The team is tracking global change using space photography.

Utah. â&#x2122;Ś

Steven Larsen (BS 1997, Premed/Biology) is attending the University of Utah School of Medicine in Salt Lake City,

Insights, the newsletter of the Utah State University College of Science, is publishedtwice a year. Its purposeis to inform alumni and friends of current events, projectsand changeshappeningwithin the College. The newsletteralso providesa forum for alumni tofollow one another'scareersand professionaldevelopment.Tlzisissue of Insights was under tlze direction.of Sally McGovern, intern coordinatorand editor,and Colette Yates, project coordinatorand editor. Contributors includeSally McGovern,Departmentof Englishintern LisaArchibald, Dean Jim MacMahon and Development Director Jerome Davies. Specialthanks to Gene Underwood,Sue Morgan,Alice Lindahl,Louise Warren, and USU photo services for the photographs, to Kandy Baumgardner,USU editorialservicesand Watkins Printing.

1990s Stephen Lee (BS 1990, Chemistry) was awarded a PhD in analytical chemistry in 1990 by Ohio State University. He is an analytical chemist with Proctor and Gamble in Cincinnati, and is married to Kayla Lee (BS 1990, Chemistry and Education). Kayla was awarded an MS in analytical chemistry in 1993 by Ohio State University.

18


Insights

Insights Readers' Survey Name:-----------------------------------Name while at USU:-----------------------------Nickname: ----------------------------------Gender:-----------------------------------Email address:--------------------------------Occupation: ---------------------------------Company/business:------------------------------t J

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Thank you for your time. D Yes, I am interested in participating in Alumni Career Network. fnl.-1

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