Jake Jacobs (far right) and his family.

Robert  “Jake” Jacobs has been awarded a NASA Future Investigators in NASA Earth and Space Science and Technology (FINESST) award for 2019 in the competitive Earth Science Division. With this award, he is developing a method to analyze latitudinal circulation utilizing satellite measurements of ocean surface vector winds measured by the QuickSCAT and ASCAT scatterometers. Our objectives are to improve understanding of climatological atmospheric circulation patterns and how surface winds in the tropical Pacific influence El Niño-Southern Oscillation (ENSO) events. Latitudinal circulation plays an important role in weather and climate variability as it shapes where precipitation falls and how heat moves from the equator to polar regions. Improved accuracy of the boundaries between large-scale atmospheric cells can advance our understanding of climate and weather models.

Robert “Jake” Jacobs has been awarded a NASA Future Investigators in NASA Earth and Space Science and Technology (FINESST) award for 2019 in the competitive Earth Science Division.  With this award, he is developing a method to analyze latitudinal circulation utilizing satellite measurements of ocean surface vector winds measured by the QuickSCAT and ASCAT scatterometers.  Our objectives are to improve understanding of climatological atmospheric circulation patterns and how surface winds in the tropical Pacific influence El Niño-Southern Oscillation (ENSO) events.  Latitudinal circulation plays an important role in weather and climate variability as it shapes where precipitation falls and how heat moves from the equator to polar regions.  Improved accuracy of the boundaries between large-scale atmospheric cells can advance our understanding of climate and weather models.

This type of work while exciting is not new, as astronautical projects have been a driving force in Jake’s life. His passion for space has taken him from an undergraduate degree in Aerospace Engineering, from Purdue University, to satellite remote sensing at Oregon State University (OSU) where he is completing a PhD in Physics. Before arriving at OSU, Jake obtained a master’s degree in physics from Eastern Michigan University (EMU). While there, he worked with funds from the NASA Space Grant to develop an ion source that would be used in sputtering experiments to model the solar wind.

Connecting with his advisor, Dr. Larry O’Neill at OSU, has created an excellent partnership, as they bring different strengths to the table.  Dr. O’Neill’s wealth of experience has helped Jake to greatly advance his knowledge of atmospheric and oceanic sciences.  While Jake’s physics and math background have assisted with advancing spatial derivative analysis techniques.  This newest project has combined Jake’s passion for physics and math with a novel astronautical venture. He greatly looks forward to continuing this project with the support of the FINESST Fellowship.

In his limited free time, Jake enjoys reading, hiking, swimming and playing disc golf with his two small children, wife and two dogs.  An extra joy in his life is watching his children grow to love the universe and all its boundless opportunities.  The family also enjoys star gazing, which can be difficult in Oregon, so they use a home star theater system to learn about space, stars and the world above.

Tyler Parsotan
Tyler Parsotan

Tyler Parsotan has been awarded a NASA Future Investigators in NASA Earth and Space Science and Technology (FINESST) award for 2019 in the extremely competitive Astrophysics category. His proposal, titled “Demystifying the Interplay between Explosion Dynamics and Electromagnetic Radiation in Gamma Ray Bursts”, was one of the 11% of selected proposals in this category.

Originally from NY, Tyler is a first generation student. His family is from the Caribbean island nation of Trinidad and Tobago. He acquired a BS in Space Physics from Embry-Riddle Aeronautical University and is now working on a PhD in Physics at Oregon State University.

Tyler is currently a fourth year graduate student working with Dr. Davide Lazzati on understanding the most powerful explosions in the Universe known as Gamma Ray Bursts. These events are so energetic that in the first few seconds of the explosion, they release more energy than our sun will emit in its entire lifetime. Understanding these events allows us to get a better handle on how matter behaves in extreme conditions and may eventually lead to using these Gamma Ray Bursts as tools that can uncover new cosmological truths.

Besides working on his research project, Tyler is the president and co-founder fo the OSU astronomy Club. The club is focused on fostering interest in astronomy at OSU and the community of Corvallis in general. Tyler, with the help of many other undergraduate and graduate students, has hosted the Astronomy Open House events where members fo the public are invited to Weniger Hall to learn about astronomy though interactive demos and rooftop observations. More information regarding OSU Astronomy can be found at: https://physics.oregonstate.edu/astronomy-club

The Apollo Chronicles: Engineering America’s First Moon Missions” (Oxford University Press) is Professor Brandon R. Brown‘s second book, published to coincide with the 50th anniversary of the first moonwalk by the astronauts of Apollo 11 in 1969. Brown’s book chronicles the work of the engineers driving the endeavor, and his family was part of that experience – his father was an engineer at NASA working on the Apollo missions at the time.

The book made its debut June 13 and there was a launch party at Folio Books in San Francisco. The Apollo Chronicles is reviewed in the “Books and Arts” section of the July 8 edition of Nature and by American Scientist, which said, “Brown shows the engineers meeting tough deadlines and performing technical miracles, drawing schematics around the clock, making mistakes, coping with warning lights that blinked at the worst possible time, and regrouping after the tragic death of three astronauts in a fire that broke out in the capsule during a simulated countdown early in 1967.”

 Now Professor and Chair of Physics at the University of San Francisco, Brandon is a graduate of our department. He earned his Ph.D. degree in Physics from OSU in 1997, studying vortex depinning in single-crystal YBaCuO in Janet Tate’s group. He subsequently spent a year studying science writing at the University of Santa Cruz, earning a post-doctoral certificate in Science Communication. After joining USF as an Assistant Professor of Physics, he pursued research in biosensing, and published several well-received articles on how sharks perceive temperature changes using a sensitive gel present in their noses. He has taught many, many different courses and is a gifted teacher. He has done several stints as department chair and has also served as Associate Dean for Sciences.

In 2015 Brandon published his first book, Planck: Driven by Vision, Broken by War (Oxford University Press), a biography of Max Planck and his path through World War II. From Planck to the Apollo missions – where will he go next?!

[Images from Professor Brown’s web page and Oxford University Press.]

Addendum, July 15.
Prof. Brown has recently published two short columns discussing aspects of his book.
Scientific American 7/12/19: Celebrating the Engineers behind the First Moon Landing
Smithsonian Guest Blog 7/12/19: Apollo Engineers Discuss What It Took to Land on the Moon