Works matching Conservation laws (Physics)
Results: 1765
Cartan's soldered spaces and conservation laws in physics.
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- International Journal of Geometric Methods in Modern Physics, 2015, v. 12, n. 9, p. -1, doi. 10.1142/S0219887815500899
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Noether Symmetries and Covariant Conservation Laws in Classical, Relativistic and Quantum Physics.
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- Symmetry (20738994), 2010, v. 2, n. 2, p. 970, doi. 10.3390/sym2020970
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How to Connect Physics with Metaphysics: Leibniz on the Conservation Law, Force, and Substance.
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- Revista Portuguesa de Filosofia, 2018, v. 74, n. 2/3, p. 787, doi. 10.17990/RPF/2018_74_2_0787
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Symmetry principles and conservation laws in atomic and subatomic physics - 2.
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- Resonance: Journal of Science Education, 2010, v. 15, n. 10, p. 926, doi. 10.1007/s12045-010-0102-9
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Noether and Space-Time Symmetries in Physics.
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- Symmetry (20738994), 2023, v. 15, n. 4, p. 933, doi. 10.3390/sym15040933
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间断问题扩散正则化的 PINN 反问题求解算法.
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- Applied Mathematics & Mechanics (1000-0887), 2023, v. 44, n. 1, p. 112, doi. 10.21656/1000-0887.430010
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Emmy Noether and Her Theorems.
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- Annalen der Physik, 2024, v. 536, n. 3, p. 1, doi. 10.1002/andp.202300479
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Conservation laws, solitary wave solutions, and lie analysis for the nonlinear chains of atoms.
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- Scientific Reports, 2023, v. 13, n. 1, p. 1, doi. 10.1038/s41598-023-38658-w
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Navier‐Stokes Equations in Gas Dynamics: Green's Function, Singularity, and Well‐Posedness.
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- Communications on Pure & Applied Mathematics, 2022, v. 75, n. 2, p. 223, doi. 10.1002/cpa.22030
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Symmetries and Conservation Laws for Differential Equations of Mathematical Physics (Book Review).
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- 2000
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- Book Review
Statistics of Mendelian segregation—A mixture model.
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- Journal of Animal Breeding & Genetics, 2019, v. 136, n. 5, p. 341, doi. 10.1111/jbg.12394
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From symmetry to supersymmetry.
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- European Physical Journal C -- Particles & Fields, 2009, v. 59, n. 2, p. 177, doi. 10.1140/epjc/s10052-008-0837-6
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Conformal motions of anisotropic exact Bianchi type II models admitting energy conditions in f(T) gravity.
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- International Journal of Modern Physics D: Gravitation, Astrophysics & Cosmology, 2023, v. 32, n. 9, p. 1, doi. 10.1142/S0218271823500578
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Hierarchical semantic composition of biosimulation models using bond graphs.
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- PLoS Computational Biology, 2021, v. 17, n. 5, p. 1, doi. 10.1371/journal.pcbi.1008859
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Conservation Laws in Scientific Explanations: Constraints or Coincidences?
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- Philosophy of Science, 2011, v. 78, n. 3, p. 333, doi. 10.1086/660299
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A posteriori error analysis for random scalar conservation laws using the stochastic Galerkin method.
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- IMA Journal of Numerical Analysis, 2020, v. 40, n. 2, p. 1094, doi. 10.1093/imanum/drz004
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Global structure instability of Riemann solutions for general quasilinear hyperbolic systems of conservation laws under small BV perturbations of the initial data: shocks and contact discontinuities.
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- IMA Journal of Applied Mathematics, 2013, v. 78, n. 6, p. 1318, doi. 10.1093/imamat/hxs022
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On path-independent integrals within the linear theory of elasticity.
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- International Journal of Fracture, 2010, v. 166, n. 1/2, p. 53, doi. 10.1007/s10704-010-9482-9
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Noether's Theorem as a Metaphor for Chargaff's 2nd Parity Rule in Genomics.
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- Journal of Molecular Evolution, 2022, v. 90, n. 3/4, p. 231, doi. 10.1007/s00239-022-10062-4
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Noether symmetries for a class of static plane symmetric solutions in f(T) gravity.
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- International Journal of Geometric Methods in Modern Physics, 2023, v. 20, n. 12, p. 1, doi. 10.1142/S0219887823501992
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A note on classification of Kantowski–Sachs and Bianchi type III solutions in f(T) gravity via conformal vector fields.
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- International Journal of Geometric Methods in Modern Physics, 2022, v. 19, n. 12, p. 1, doi. 10.1142/S0219887822501882
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Canonical equations for generalized Chaplygin systems and Herglotz-type Noether theorems: Canonical equations for generalized Chaplygin: Y. Zhang.
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- Acta Mechanica, 2025, v. 236, n. 2, p. 1061, doi. 10.1007/s00707-024-04204-6
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Kružkov-type uniqueness theorem for the chemical flood conservation law system with local vanishing viscosity admissibility.
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- Journal of Hyperbolic Differential Equations, 2024, v. 21, n. 4, p. 1003, doi. 10.1142/S0219891624500164
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The Physics Section in Symmetry.
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- Symmetry (20738994), 2025, v. 17, n. 2, p. 156, doi. 10.3390/sym17020156
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SYMMETRY SCHEME OF THE TIME FRACTIONAL (3+1)-DIMENSIONAL MODIFIED EXTENDED ZAKHAROV–KUZNETSOV EQUATION IN PLASMA PHYSICS.
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- Fractals, 2025, v. 33, n. 1, p. 1, doi. 10.1142/S0218348X25500045
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New asymptotic lower bound for the radius of analyticity of solutions to nonlinear Schrödinger equation.
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- Analysis & Applications, 2024, v. 22, n. 5, p. 815, doi. 10.1142/S0219530524500039
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Crack behavior in a welded polyolefin pipe.
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- Mechanics of Composite Materials, 2011, v. 47, n. 3, p. 263, doi. 10.1007/s11029-011-9206-x
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Fradkin-Bacry-Ruegg-Souriau perihelion vector for Gorringe-Leach equations.
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- Celestial Mechanics & Dynamical Astronomy, 2010, v. 106, n. 2, p. 109, doi. 10.1007/s10569-009-9244-z
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Large Courant–Friedrichs–Lewy explicit scheme for one‐dimensional hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2024, v. 96, n. 11, p. 1760, doi. 10.1002/fld.5322
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A modified fifth‐order WENO‐Z scheme based on the weights of the reformulated adaptive order WENO scheme.
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- International Journal for Numerical Methods in Fluids, 2024, v. 96, n. 10, p. 1631, doi. 10.1002/fld.5314
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Directionally‐split volume‐of‐fluid technique for front propagation under curvature flow.
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- International Journal for Numerical Methods in Fluids, 2024, v. 96, n. 9, p. 1517, doi. 10.1002/fld.5312
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A third‐order entropy condition scheme for hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2024, v. 96, n. 6, p. 930, doi. 10.1002/fld.5268
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WENO smoothness indicator based troubled‐cell indicator for hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2024, v. 96, n. 1, p. 44, doi. 10.1002/fld.5237
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Cartesian‐MUSCL‐like face‐value reconstruction algorithm for solving the depth‐averaged 2D shallow‐water equations.
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- International Journal for Numerical Methods in Fluids, 2023, v. 95, n. 9, p. 1404, doi. 10.1002/fld.5197
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An arbitrary Lagrangian–Eulerian discontinuous Galerkin method for two‐dimensional compressible flows on adaptive quadrilateral meshes.
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- International Journal for Numerical Methods in Fluids, 2023, v. 95, n. 5, p. 796, doi. 10.1002/fld.5172
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An edge‐based smoothed finite element framework for partitioned simulation of vortex‐induced vibration problems.
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- International Journal for Numerical Methods in Fluids, 2022, v. 94, n. 11, p. 1863, doi. 10.1002/fld.5130
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A finite difference Hermite RBF‐WENO scheme for hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2022, v. 94, n. 6, p. 583, doi. 10.1002/fld.5067
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Semi‐Lagrangian discontinuous Galerkin methods for scalar hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2022, v. 94, n. 5, p. 482, doi. 10.1002/fld.5063
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Finite difference modified WENO schemes for hyperbolic conservation laws with non‐convex flux.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 10, p. 3005, doi. 10.1002/fld.5020
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The QUICK scheme is a third‐order finite‐volume scheme with point‐valued numerical solutions.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 7, p. 2311, doi. 10.1002/fld.4975
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Arbitrary high‐order extended essentially non‐oscillatory schemes for hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 7, p. 2136, doi. 10.1002/fld.4968
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A new reconstruction of numerical fluxes for conservation laws using fuzzy operators.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 6, p. 1690, doi. 10.1002/fld.4948
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A new ninth‐order central Hermite weighted essentially nonoscillatory scheme for hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 5, p. 1645, doi. 10.1002/fld.4946
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A truncation error analysis of third‐order MUSCL scheme for nonlinear conservation laws.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 4, p. 1031, doi. 10.1002/fld.4918
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A high‐order implicit hybridizable discontinuous Galerkin method for the Benjamin‐Bona‐Mahony equation.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 3, p. 543, doi. 10.1002/fld.4896
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Local discontinuous Galerkin method for a nonlocal viscous conservation laws.
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- International Journal for Numerical Methods in Fluids, 2021, v. 93, n. 1, p. 197, doi. 10.1002/fld.4880
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An improved third‐order finite difference weighted essentially nonoscillatory scheme for hyperbolic conservation laws.
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- International Journal for Numerical Methods in Fluids, 2020, v. 92, n. 12, p. 1753, doi. 10.1002/fld.4847
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A high‐order discontinuous Galerkin method for the incompressible Navier‐Stokes equations on arbitrary grids.
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- International Journal for Numerical Methods in Fluids, 2019, v. 90, n. 5, p. 217, doi. 10.1002/fld.4718
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Sticky particles and the pressureless Euler equations in one spatial dimension.
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- Mathematische Zeitschrift, 2022, v. 301, n. 2, p. 2155, doi. 10.1007/s00209-022-02991-z
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NOISE AND TRANSPORT IN MESOSCOPICS:: PHYSICS BEYOND THE LANDAUER–BÜTTIKER FORMALISM.
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- Fluctuation & Noise Letters, 2005, v. 5, n. 1, p. C1, doi. 10.1142/S0219477505002355
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