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1.5.0-DEV-86ee57cdd7.log
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Julia Version 1.5.0-DEV.689
Commit 86ee57cdd7 (2020-04-25 20:17 UTC)
Platform Info:
OS: Linux (x86_64-pc-linux-gnu)
CPU: Intel(R) Xeon(R) Silver 4114 CPU @ 2.20GHz
WORD_SIZE: 64
LIBM: libopenlibm
LLVM: libLLVM-9.0.1 (ORCJIT, skylake)
Environment:
JULIA_DEPOT_PATH = ::/usr/local/share/julia
JULIA_NUM_THREADS = 2
Resolving package versions...
Installed Zlib_jll ────── v1.2.11+9
Installed Equations ───── v1.0.0
Installed Combinatorics ─ v1.0.1
Installed EzXML ───────── v1.1.0
Installed ExprTools ───── v0.1.1
Installed RecipesBase ─── v1.0.1
Installed Intervals ───── v1.1.0
Installed TimeZones ───── v1.1.1
Installed XML2_jll ────── v2.9.9+4
Installed Libiconv_jll ── v1.16.0+2
Installed Mocking ─────── v0.7.1
Installed Polynomials ─── v0.8.0
Updating `~/.julia/environments/v1.5/Project.toml`
[3a41ca7c] + Equations v1.0.0
Updating `~/.julia/environments/v1.5/Manifest.toml`
[861a8166] + Combinatorics v1.0.1
[3a41ca7c] + Equations v1.0.0
[e2ba6199] + ExprTools v0.1.1
[8f5d6c58] + EzXML v1.1.0
[d8418881] + Intervals v1.1.0
[94ce4f54] + Libiconv_jll v1.16.0+2
[78c3b35d] + Mocking v0.7.1
[f27b6e38] + Polynomials v0.8.0
[3cdcf5f2] + RecipesBase v1.0.1
[f269a46b] + TimeZones v1.1.1
[02c8fc9c] + XML2_jll v2.9.9+4
[83775a58] + Zlib_jll v1.2.11+9
[2a0f44e3] + Base64
[ade2ca70] + Dates
[b77e0a4c] + InteractiveUtils
[76f85450] + LibGit2
[8f399da3] + Libdl
[37e2e46d] + LinearAlgebra
[56ddb016] + Logging
[d6f4376e] + Markdown
[44cfe95a] + Pkg
[de0858da] + Printf
[3fa0cd96] + REPL
[9a3f8284] + Random
[ea8e919c] + SHA
[9e88b42a] + Serialization
[6462fe0b] + Sockets
[cf7118a7] + UUIDs
[4ec0a83e] + Unicode
Building TimeZones → `~/.julia/packages/TimeZones/X323b/deps/build.log`
Testing Equations
Status `/tmp/jl_Iaks17/Project.toml`
[861a8166] Combinatorics v1.0.1
[3a41ca7c] Equations v1.0.0
[37e2e46d] LinearAlgebra
[9a3f8284] Random
[8dfed614] Test
Status `/tmp/jl_Iaks17/Manifest.toml`
[861a8166] Combinatorics v1.0.1
[3a41ca7c] Equations v1.0.0
[e2ba6199] ExprTools v0.1.1
[8f5d6c58] EzXML v1.1.0
[d8418881] Intervals v1.1.0
[94ce4f54] Libiconv_jll v1.16.0+2
[78c3b35d] Mocking v0.7.1
[f27b6e38] Polynomials v0.8.0
[3cdcf5f2] RecipesBase v1.0.1
[f269a46b] TimeZones v1.1.1
[02c8fc9c] XML2_jll v2.9.9+4
[83775a58] Zlib_jll v1.2.11+9
[2a0f44e3] Base64
[ade2ca70] Dates
[8ba89e20] Distributed
[b77e0a4c] InteractiveUtils
[76f85450] LibGit2
[8f399da3] Libdl
[37e2e46d] LinearAlgebra
[56ddb016] Logging
[d6f4376e] Markdown
[44cfe95a] Pkg
[de0858da] Printf
[3fa0cd96] REPL
[9a3f8284] Random
[ea8e919c] SHA
[9e88b42a] Serialization
[6462fe0b] Sockets
[8dfed614] Test
[cf7118a7] UUIDs
[4ec0a83e] Unicode
Running test # 1 2 3 ┌ Warning: Assignment to `l` in soft scope is ambiguous because a global variable by the same name exists: `l` will be treated as a new local. Disambiguate by using `local l` to suppress this warning or `global l` to assign to the existing global variable.
└ @ ~/.julia/packages/Equations/IvrkN/test/equationsTests.jl:26
┌ Warning: Assignment to `r` in soft scope is ambiguous because a global variable by the same name exists: `r` will be treated as a new local. Disambiguate by using `local r` to suppress this warning or `global r` to assign to the existing global variable.
└ @ ~/.julia/packages/Equations/IvrkN/test/equationsTests.jl:26
4 5 6 7 8 9 10 11 12 13 14 2964.444444444445 [m]
A 3 meters long pole is traveling quickly toward a barn that is shorter than its length.
Measured in the inertial system of the pole with l=length of pole and c=1,
at time t:
Base of pole: x´ = 0, t´ = t
Tip of pole: x´ = 1.3333333333333333 l, t´ = t + (-0.6666666666666666) l
Time at the tip is earlier than at the base, hence when the tip touches the barn wall the base has had time to enter.
The pole is rotated about the time axis of the barn. When one object is rotated relative to another their projections become dwarfed, like when drawing a line at right angle from the minute pointer of a clock to its hour pointer, the projection becomes progressively smaller until it disappears at ninety degrees which in this analogy is light speed. Photons can therefore be complete universes that are rotated at right angles with respect to this universe.
15
Testing Equations tests passed