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- Brian Post
- Chris Tyler
- Adam M Guss
- Andrzej Nycz
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- Blane Fillingim
- Peeyush Nandwana
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- Kuntal De
- Lauren Heinrich
- Michael Kirka
- Rangasayee Kannan
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- Vincent Paquit
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- Akash Jag Prasad
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- Biruk A Feyissa
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- Cameron Adkins
- Carrie Eckert
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- Christopher Ledford
- Clay Leach
- Corson Cramer
- Craig Blue
- Debjani Pal
- Emma Betters
- Fred List III
- Gerald Tuskan
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- Greg Corson
- Ilenne Del Valle Kessra
- Isaiah Dishner
- Isha Bhandari
- James Klett
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- Jay Reynolds
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- Jeff Foster
- Jesse Heineman
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- Liangyu Qian
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- Paul Abraham
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- Roger G Miller
- Sarah Graham
- Serena Chen
- Singanallur Venkatakrishnan
- Steve Bullock
- Steven Guzorek
- Thomas Butcher
- Tony L Schmitz
- Trevor Aguirre
- Vilmos Kertesz
- Vladimir Orlyanchik
- Vlastimil Kunc
- William Peter
- Yang Liu
- Yukinori Yamamoto

In additive manufacturing large stresses are induced in the build plate and part interface. A result of these stresses are deformations in the build plate and final component.

Detection of gene expression in plants is critical for understanding the molecular basis of plant physiology and plant responses to drought, stress, climate change, microbes, insects and other factors.

This technology identifies enzymatic routes to synthesize amide oligomers with defined sequence to improve polymerization of existing materials or enable polymerization of new materials. Polymers are generally composed of one (e.g. Nylon 6) or two (e.g.

A valve solution that prevents cross contamination while allowing for blocking multiple channels at once using only one actuator.

Materials produced via additive manufacturing, or 3D printing, can experience significant residual stress, distortion and cracking, negatively impacting the manufacturing process.

The technologies described provides for the upcycling of mixed plastics to muonic acid and 3-hydroxyacids.

This invention is for bacterial strains that can utilize lignocellulose sugars. This will improve the efficiency of bioproduct formation in these strains and reduce the greenhouse-gas emission of an industrial bi

This work seeks to alter the interface condition through thermal history modification, deposition energy density, and interface surface preparation to prevent interface cracking.

Additive manufacturing (AM) enables the incremental buildup of monolithic components with a variety of materials, and material deposition locations.

Quantifying tool wear is historically challenging task due to variable human interpretation. This capture system will allow for an entire side and the complete end of the cutting tool to be analyzed.