PPT-Effects of tensor interactions and high-momentum nucleons
Author : lindy-dunigan | Published Date : 2018-10-30
near the ground states of nuclei Study by 16 Oppd 14 N reaction Isao Tanihata H J Ong s Terashima and E443 collaboration at RCNP IRCNPC and SPNEE Beihang University
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Effects of tensor interactions and high-momentum nucleons: Transcript
near the ground states of nuclei Study by 16 Oppd 14 N reaction Isao Tanihata H J Ong s Terashima and E443 collaboration at RCNP IRCNPC and SPNEE Beihang University Beijing China. IndexTopicarraytensor,1%*t%(tensor),1%t*%(tensor),1%t*t%(tensor),1aperm,2matmult,2tensor,14 Eli Piasetzky. Tel Aviv University, Israel . The EMC effect is 30 years old. Deep Inelastic Scattering (DIS) . . E. E`. (. ,. q. ). nucleon. Final state Hadrons . W. 2. Incident lepton. E, E’ 5-500 GeV. Misak Sargsian. Florida International University, Miami. Hadrons in the . Nuclear. Medium. CLAS 12 2. nd. European Workshop. 7-11, March 2010, Paris. High Energy Electro- Nuclear Processes . . in de Sitter Space. Yoshihisa Kitazawa. KEK Theory Center and . Sokendai. H. . Kitamoto. and Y.K. . arXiv:1012:5930. Introduction. Scale invariant infra-red quantum fluctuations of . minimally coupled massless scalar field and gravitons . Overview. Theory. Basic . physics. Tensor. Diffusion . imaging . Practice. How . do you do DTI?. . Tractography. . DTI . in . FSL and other programs. Diffusion . Tensor Imaging. Brownian motion. Overview. Theory. Basic . physics. Tensor. Diffusion . imaging . Practice. How . do you do DTI?. . Tractography. . DTI . in . FSL and other programs. Diffusion . Tensor Imaging. Brownian motion. He Zhang. 1. , He Huang. 2. , . Rui. Li. 1. , . Jie. Chen. 1. , Li-Shi Luo. 2. Jefferson Lab. Old Dominion University. FEIS-2, 05/15/2015. Outline. He Zhang. ---. 3. ---. Introduction of FMM. He Zhang. Momentum = Mass x Velocity. p. =. mv. The SI unit for momentum is . kg·m. /s. Momentum and velocity are in the same . direction. Is a vector. Using the equation. p=. mv. At the same velocity, as mass increases – momentum increases. Momentum = Mass x Velocity. p. =. mv. The SI unit for momentum is . kg·m. /s. Momentum and velocity are in the same . direction. Is a vector. Using the equation. p=. mv. At the same velocity, as mass increases – momentum increases. mass of an object and it’s velocity. .. . Formula:. p = . mv. mass . (kg). velocity . (m. ⋅. s. -1. ). momentum (kg. ⋅. m. ⋅. s. -1. ). Unit: kg⋅m⋅s. -1. Momentum is influenced by. Juan Andrés . Bazerque. , Gonzalo . Mateos. , and . Georgios. B. . Giannakis. . August. 8, 2012. . Spincom. group, University of Minnesota. . Acknowledgment: . AFOSR MURI grant no. FA 9550-10-1-0567. What is Momentum? Unit 8 Section 3 Momentum Momentum is a property of ALL moving objects Momentum is the product of the mass and velocity of an object. Momentum = mass x velocity ( P=M x V) Momentum is labeled as kg x m/s with a direction. What is Momentum? Momentum may be defined by its equation: Momentum is a quantity defined as the product of the mass and velocity of an object. Unit of Momentum The equation illustrates that momentum is directly proportional to an object’s mass and the object’s velocity. Momentum. Measures how hard it is to stop a moving object.. Momentum can be defined as . "mass in motion.". . All objects have mass; so if an object is moving, then it has momentum - it has its mass in motion. .
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