Riley David Newman

Affiliations: 
1966 Physics University of California, Irvine, Irvine, CA 
Area:
Experimental elementary particle and gravitational physics
Website:
http://www.faculty.uci.edu/profile.cfm?faculty_id=2045
Google:
"Riley David Newman"
Bio:

https://inspirehep.net/record/995787?ln=en

Mean distance: 12.91
 
SNBCP

Parents

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William Chinowsky grad student 1966 UC Berkeley
 (K+p inelastic interactions at 2.7 BeV/c.)
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Publications

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Hoskins JK, Newman RD, Spero R, et al. (2019) Experimental tests of the gravitational inverse-square law for mass separations from 2 to 105 cm. Physical Review. D, Particles and Fields. 32: 3084-3095
Schlamminger S, Gundlach JH, Newman RD. (2015) Recent measurements of the gravitational constant as a function of time Physical Review D - Particles, Fields, Gravitation and Cosmology. 91
Newman R, Bantel M, Berg E, et al. (2014) A measurement of G with a cryogenic torsion pendulum. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences. 372
Boynton PE, Bonicalzi RM, Kalet AM, et al. (2007) Gravitation physics at BGPL New Astronomy Reviews. 51: 334-340
Berg EC, Bantel MK, Cross WD, et al. (2006) Laboratory Tests of Gravitational Physics Using a Cryogenic Torsion Pendulum Arxiv: General Relativity and Quantum Cosmology. 994-1010
Adelberger EG, Fischbach E, Krause DE, et al. (2003) Constraining the couplings of massive pseudoscalars using gravity and optical experiments Physical Review D. 68
Newman R. (2001) Prospects for terrestrial equivalence principle tests with a cryogenic torsion pendulum Classical and Quantum Gravity. 18: 2407-2415
Bantel MK, Newman RD. (2000) A cryogenic torsion pendulum: progress report Classical and Quantum Gravity. 17: 2313-2318
Bantel MK, Newman RD. (2000) High precision measurement of torsion fiber internal friction at cryogenic temperatures Journal of Alloys and Compounds. 310: 233-242
Newman RD, Bantel MK. (1999) On determining G using a cryogenic torsion pendulum Measurement Science and Technology. 10: 445-453
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