# tests for sympy-1.10.1-py39h06a4308_0 (this is a generated file); print('===== testing package: sympy-1.10.1-py39h06a4308_0 ====='); print('running run_test.py'); # --- run_test.py (begin) --- import sympy from sympy import Rational a = Rational(14, 4) assert str(a) == '7/2' # --- run_test.py (end) --- print('===== sympy-1.10.1-py39h06a4308_0 OK ====='); print("import: 'sympy'") import sympy print("import: 'sympy.algebras'") import sympy.algebras print("import: 'sympy.assumptions'") import sympy.assumptions print("import: 'sympy.assumptions.handlers'") import sympy.assumptions.handlers print("import: 'sympy.assumptions.predicates'") import sympy.assumptions.predicates print("import: 'sympy.assumptions.relation'") import sympy.assumptions.relation print("import: 'sympy.benchmarks'") import sympy.benchmarks print("import: 'sympy.calculus'") import sympy.calculus print("import: 'sympy.categories'") import sympy.categories print("import: 'sympy.codegen'") import sympy.codegen print("import: 'sympy.combinatorics'") import sympy.combinatorics print("import: 'sympy.concrete'") import sympy.concrete print("import: 'sympy.core'") import sympy.core print("import: 'sympy.core.benchmarks'") import sympy.core.benchmarks print("import: 'sympy.crypto'") import sympy.crypto print("import: 'sympy.diffgeom'") import sympy.diffgeom print("import: 'sympy.discrete'") import sympy.discrete print("import: 'sympy.external'") import sympy.external print("import: 'sympy.functions'") import sympy.functions print("import: 'sympy.functions.combinatorial'") import sympy.functions.combinatorial print("import: 'sympy.functions.elementary'") import sympy.functions.elementary print("import: 'sympy.functions.elementary.benchmarks'") import sympy.functions.elementary.benchmarks print("import: 'sympy.functions.special'") import sympy.functions.special print("import: 'sympy.functions.special.benchmarks'") import sympy.functions.special.benchmarks print("import: 'sympy.geometry'") import sympy.geometry print("import: 'sympy.holonomic'") import sympy.holonomic print("import: 'sympy.integrals'") import sympy.integrals print("import: 'sympy.integrals.benchmarks'") import sympy.integrals.benchmarks print("import: 'sympy.integrals.rubi'") import sympy.integrals.rubi print("import: 'sympy.integrals.rubi.parsetools'") import sympy.integrals.rubi.parsetools print("import: 'sympy.integrals.rubi.rubi_tests'") import sympy.integrals.rubi.rubi_tests print("import: 'sympy.integrals.rubi.rules'") import sympy.integrals.rubi.rules print("import: 'sympy.interactive'") import sympy.interactive print("import: 'sympy.liealgebras'") import sympy.liealgebras print("import: 'sympy.logic'") import sympy.logic print("import: 'sympy.logic.algorithms'") import sympy.logic.algorithms print("import: 'sympy.logic.utilities'") import sympy.logic.utilities print("import: 'sympy.matrices'") import sympy.matrices print("import: 'sympy.matrices.benchmarks'") import sympy.matrices.benchmarks print("import: 'sympy.matrices.expressions'") import sympy.matrices.expressions print("import: 'sympy.multipledispatch'") import sympy.multipledispatch print("import: 'sympy.ntheory'") import sympy.ntheory print("import: 'sympy.parsing'") import sympy.parsing print("import: 'sympy.parsing.autolev'") import sympy.parsing.autolev print("import: 'sympy.parsing.autolev._antlr'") import sympy.parsing.autolev._antlr print("import: 'sympy.parsing.c'") import sympy.parsing.c print("import: 'sympy.parsing.fortran'") import sympy.parsing.fortran print("import: 'sympy.parsing.latex'") import sympy.parsing.latex print("import: 'sympy.parsing.latex._antlr'") import sympy.parsing.latex._antlr print("import: 'sympy.physics'") import sympy.physics print("import: 'sympy.physics.continuum_mechanics'") import sympy.physics.continuum_mechanics print("import: 'sympy.physics.control'") import sympy.physics.control print("import: 'sympy.physics.hep'") import sympy.physics.hep print("import: 'sympy.physics.mechanics'") import sympy.physics.mechanics print("import: 'sympy.physics.optics'") import sympy.physics.optics print("import: 'sympy.physics.quantum'") import sympy.physics.quantum print("import: 'sympy.physics.units'") import sympy.physics.units print("import: 'sympy.physics.units.definitions'") import sympy.physics.units.definitions print("import: 'sympy.physics.units.systems'") import sympy.physics.units.systems print("import: 'sympy.physics.vector'") import sympy.physics.vector print("import: 'sympy.plotting'") import sympy.plotting print("import: 'sympy.plotting.intervalmath'") import sympy.plotting.intervalmath print("import: 'sympy.plotting.pygletplot'") import sympy.plotting.pygletplot print("import: 'sympy.polys'") import sympy.polys print("import: 'sympy.polys.agca'") import sympy.polys.agca print("import: 'sympy.polys.benchmarks'") import sympy.polys.benchmarks print("import: 'sympy.polys.domains'") import sympy.polys.domains print("import: 'sympy.polys.matrices'") import sympy.polys.matrices print("import: 'sympy.printing'") import sympy.printing print("import: 'sympy.printing.pretty'") import sympy.printing.pretty print("import: 'sympy.sandbox'") import sympy.sandbox print("import: 'sympy.series'") import sympy.series print("import: 'sympy.series.benchmarks'") import sympy.series.benchmarks print("import: 'sympy.sets'") import sympy.sets print("import: 'sympy.sets.handlers'") import sympy.sets.handlers print("import: 'sympy.simplify'") import sympy.simplify print("import: 'sympy.solvers'") import sympy.solvers print("import: 'sympy.solvers.benchmarks'") import sympy.solvers.benchmarks print("import: 'sympy.solvers.diophantine'") import sympy.solvers.diophantine print("import: 'sympy.solvers.ode'") import sympy.solvers.ode print("import: 'sympy.stats'") import sympy.stats print("import: 'sympy.stats.sampling'") import sympy.stats.sampling print("import: 'sympy.strategies'") import sympy.strategies print("import: 'sympy.strategies.branch'") import sympy.strategies.branch print("import: 'sympy.tensor'") import sympy.tensor print("import: 'sympy.tensor.array'") import sympy.tensor.array print("import: 'sympy.tensor.array.expressions'") import sympy.tensor.array.expressions print("import: 'sympy.testing'") import sympy.testing print("import: 'sympy.unify'") import sympy.unify print("import: 'sympy.utilities'") import sympy.utilities print("import: 'sympy.utilities._compilation'") import sympy.utilities._compilation print("import: 'sympy.utilities.mathml'") import sympy.utilities.mathml print("import: 'sympy.vector'") import sympy.vector