TLU students have participated in research at Texas A&M, University of Pennsylvania, University of Nebraska-Lincoln, Duke, University of Florida, among others. Students are encouraged to explore the wide range of summer opportunities offered by universities and industrial companies around the U.S. TLU students are active in state and national level professional scientific meetings. Laboratory work leads to the senior capstone experience where students work on a year-long (or more) independent project with a faculty mentor that culminates in a senior thesis and presentation at a professional conference. Our advanced lab courses hone the experimental skills needed to carry out more advanced laboratory work, while our computational methods courses provide the software foundations that are common in many laboratory settings. TLU Physics students are encouraged to explore faculty mentored research opportunities in the first year of their physics experience. Students from affiliate schools are also eligible to receive a discount for the January Intensive Term (J-Term), a special 11-day intensive format where students study and live together and get a head-start at building connections before enrolling as dual degree engineering students.įor information on how to apply, admissions criteria, application deadlines, financial aid, housing, and WashU’s J-Term visit /dualdegree Students can begin applications immediately, with the first cohort at WashU beginning in fall 2024. TLU students choosing this option will complete a minimum of 100 credit hours at TLU with a cumulative GPA of 3.25 in math and science coursework. Our students study at TLU for three years in the Bachelor of Science in Applied Physics program, then spend two years at WashU to complete both the bachelor’s in Applied Physics and a bachelor’s in Engineering in one of nine engineering majors including: McKelvey School of Engineering at Washington University in St. TLU is an official affiliate of the Washington University (WashU) McKelvey School of Engineering in St. Students will participate in the broader professional scientific community in Texas and around the U.S by attending regional and national scientific meetings. Our unique computational physics sequence includes instruction in widely used software applications for modern engineering and applied physics, including MATLAB™ and LabVIEW™. The TLU Physics faculty is committed to providing an engaging curriculum in the classroom, and faculty mentored, open-ended research opportunities outside the classroom. You will find physics degree holders in all areas of science and technology-related careers, as well as business, medicine, law and even economics.Īt TLU, physics students meet the challenges of understanding the natural world with small introductory classes, hands-on laboratory experiences and an active student-centered learning community. Students with degrees in physics work in any field which values critical thinking skills, mathematical dexterity, analysis, and creative problem solving. At TLU Physics, our attention to the individual student allows that curiosity to manifest in a variety of ways, accommodating a vast range of career goals. Students in physics are curious about how the universe works from the nano-scale interactions of biological systems to the mysteries of dark matter. As part of the complete undergraduate experience, all students are encouraged to seek out one of many summer research or internship opportunities that host physics students around the U.S. Students are encouraged to participate in faculty mentored independent research early on, and all students are required to complete a senior capstone research project. Several advanced labs, including a unique computational methods course sequence, allow students to hone experimental and computational skills. Introductory laboratories are designed to bolster both content knowledge and practical skills. ![]() Small class size and a dedicated faculty allow TLU Physics students to thrive and grow as learners. Students in physics degree programs learn the basic principles that govern the natural world and how to extend and apply those principles to solve new problems through experiment and mathematical analysis. In fact, the word “physics” stems from the Greek word phyusika, which translates to “natural things”. ![]() Physics is the most fundamental of all the natural sciences, aimed at understanding all parts of the natural world.
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