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Elastic potential energy
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Part 1 book "Physics for scientists and engineers" by authors Raymond A. Serway and John W. Jewett includes content: Physics and measurement, motion in one dimension, vectors, motion in two dimensions, the laws of motion, circular motion and other applications of Newton’s laws, energy and energy transfer, potential energy, linear momentum and collisions, rotation of a rigid object about a fixed axis, angular momentum, static equilibrium and elasticity, universal gravitation, fluid mechanics.
459p
muasambanhan10
03-04-2024
3
1
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Part 1 book "Sears and Zemansky's university physics - With modern physics" includes content: Units, physical quantities, and vectors; motion along a straight line; motion in two or three dimensions; Newton’s laws of motion; applying Newton’s laws; work and kinetic energy; potential energy and energy conservation; momentum, impulse, and collisions; rotation of rigid bodies; dynamics of rotational motion; equilibrium and elasticity; fluid mechanics; gravitation; periodic motion.
497p
muasambanhan09
16-03-2024
6
1
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Part 1 book "Fundamentals of physics" includes content: Measurement, motion along a straight line, vectors, motion in two and three dimensions, force and motion, kinetic energy and work, potential energy and conservation of energy, center of mass and linear momentum, rotation, rolling, torque and angular momentum, equilibrium and elasticity, gravitation.
412p
muasambanhan08
01-03-2024
6
1
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Part 1 book "University physics with modern physics" includes content: Units, physical quantities and vectors; motion along a straight line; motion in two or three dimensions; Newton's laws of motion; applying Newton's laws; work and kinetic energy; potential energy and energy conservation; momentum, impulse, and collisions; rotation of rigid bodies; dynamics of rotational motion; equilibrium and elasticity; fluid mechanics; gravitation; periodic motion.
483p
muasambanhan07
18-02-2024
9
1
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Part 1 book "University physics with modern physics" includes content: Units, physical quantities, and vectors; motion along a straight line; motion in two or three dimensions; newton’s laws of motion; applying newton’s laws; work and kinetic energy; potential energy and energy conservation; momentum, impulse, and collisions; rotation of rigid bodies; dynamics of rotational motion; equilibrium and elasticity; fluid mechanics; gravitation; periodic motion.
491p
muasambanhan04
07-01-2024
8
1
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Part 1 of ebook "Fundamentals of physics" provides readers with contents including: measurement; motion along a straight line; vectors; motion in two and three dimensions; force and motion; kinetic energy and work; potential energy and conservation of energy; center of mass and linear momentum; rolling, torque, and angular momentum; equilibrium and elasticity; temperature, heat, and the first law of thermodynamics; the kinetic theory of gases; entropy and the second law of thermodynamics;...
742p
lytamnguyet
04-08-2023
6
4
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In this brief report, we make a short review of progress in developing the microscopic optical potential in recent years. In particular, we present our current studies and plans on building the microscopic optical potential based on the so-called nuclear structure models at low energies.
5p
vispiderman
15-06-2023
4
3
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In the present work, the effects of the momentum and density-dependent term will be evaluated in a the framework of microscopic optical potential based on the particle-vibration coupling.
7p
visnape
30-01-2023
9
4
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The neutron tomography, although lower in spatial resolution compared with the X-ray synchrotron tomography and requiring higher acquisition time, is sensitive to the phase chemistry, and has the potential to study engineering size components. Bragg edge neutron transmission imaging allows for the mapping of two-dimensional elastic strains and was used to identify the fatigue crack from the reduction in the strain in the region where the crack propagated.
13p
guernsey
28-12-2021
7
0
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In this study, the mean nearest neighbor distance between two atoms, the Helmholtz free energy and characteristic quantities for elastic deformation such as elastic moduli E, G, K and elastic constants C11, C12, C44 for binary interstitial alloys with FCC structure under pressure are derived with the statistical moment method.
12p
meyerowitz
25-12-2021
7
0
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Lecture General Physics 2 - Chapter 13: Vibrations and Waves. After studying this section will help you understand: Hooke’s law, Hooke’s law force, mass system, simple harmonic motion, amplitude, period and frequency, elastic potential energy, energy transformations,...
51p
diepchilang
26-08-2021
13
1
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Nuclear reactions of proton by light nuclei at low energies play a key role in the study of nucleosynthesis which is of interest in nuclear astrophysics. The most fundamental process which is very necessary is the elastic scattering. In this work, we construct a microscopic proton-nucleus potential in order to describe the differential cross-sections over scattering angles of the proton elastic scattering by 12C and 13C in the range of available energies 14 - 22 MeV. The microscopic optical potential is based on the folding model using the effective nucleon-nucleon interaction CDM3Yn.
12p
trinhthamhodang1218
18-03-2021
14
1
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For the first time, a realistic microscopic calculation for low-energy neutron-nucleus elastic scattering off open-shell nuclei is carried out within the framework of particle-vibration coupling (PVC). In this study, the pairing correlations of the ground state are taken into account. The dependence of the angular distributions on the pairing gaps is discussed.
5p
nguaconbaynhay9
03-12-2020
13
0
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Deuteron elastic scattering off 12C is described in the framework of three-body Faddeev-type equations. Analyzing powers are calculated using the PEST16 potential, which is a separable rank-one representation of the Paris potential. Satisfactory agreement with the experimental data is found within the PEST16 potential.
4p
nguaconbaynhay9
03-12-2020
7
1
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Elastic 12C+12C angular distributions at three bombarding energies of 102.1, 112.0 and 126.1 MeV were analyzed in the framework of optical model (OM) and compared to the experimental data. The reality of the OM analysis using the double folding potential depends on the chosen nuclear density distributions.
6p
vitheseus2711
29-10-2019
13
0
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The folded potentials at the different energies were used in the optical model description of the elastic 12C+12C scattering at the energies around and below the Coulomb barrier, as well as in the barrier penetration model to estimate the fusion cross section and astrophysical S factor of the 12C+12C reactions at the low energies. The obtained results are in good agreement with experimental data over a wide range of energies.
10p
thuyliebe
09-10-2018
20
0
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The calculations are based on the linearized Boltzmann equation (BE) and the relaxation time approximation, assuming the scattering by acoustic phonons to be quasi-elastic. We consider three physically distinct temperature ranges with respect to phonon scattering: the Bloch-Gruneisen ¨ (BG), equipartition (EP), and inelastic regimes.
10p
thuyliebe
08-10-2018
25
2
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