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Initializing Conjecture A Base: 58 Secret: 228 Signal: 229 Performed modPow Operation (58 ^ 229 % 257) = 215 Channel: 215 Performed modPow Operation (151 ^ 228 % 257) = 81 Challenge: 81 ----- Done! ----- Initializing Conjecture B Base: 154 Secret: 31 Signal: 246 Performed modPow Operation (154 ^ 246 % 257) = 139 Channel: 139 Performed modPow Operation (151 ^ 31 % 257) = 237 Challenge: 237 Conjecture.new(isListener => Bool::False, base => 58, secret => 228, signal => 229, channel => 215, pole => Int, identity => Int, foundation => Int, element => Int, dynamo => Int, manifold => Int, ring => Int, barn => Int, reactor => (my Int %)) Conjecture.new(isListener => Bool::False, base => 154, secret => 31, signal => 246, channel => 139, pole => Int, identity => Int, foundation => Int, element => Int, dynamo => Int, manifold => Int, ring => Int, barn => Int, reactor => (my Int %)) Establishing Dynamo Performed modPow Operation (237 ^ 228 % 257) = 92 Performed modPow Operation (92 ^ 229 % 257) = 140 Channel: 140 Performed modPow Operation (81 ^ 31 % 257) = 92 Performed modPow Operation (92 ^ 246 % 257) = 223 Channel: 223 Dynamo Base: 92 Performed modPow Operation (92 ^ 228 % 257) = 225 Pole: 225 Performed modPow Operation (92 ^ 31 % 257) = 81 Pole: 81 Performed modPow Operation (81 ^ 228 % 257) = 8 Performed modPow Operation (225 ^ 31 % 257) = 8 ----- Peer A Summary: Channel: 140 Signal: 229 Pole: 225 Carrier: 8 Peer B Summary: Channel: 223 Signal: 246 Pole: 81 Carrier: 8 ----- Establishing Peer B As Listener And Publishing Pubkeys Performed modPow Operation (92 ^ 15 % 257) = 246 Established Listener Ephemeral Keypair Identity/Foundation: 246/15 Conjecture.new(isListener => Bool::False, base => 92, secret => 228, signal => 229, channel => 140, pole => 225, identity => Int, foundation => Int, element => Int, dynamo => Int, manifold => Int, ring => Int, barn => Int, reactor => (my Int %)) Conjecture.new(isListener => Bool::True, base => 92, secret => 31, signal => 246, channel => 223, pole => 81, identity => 15, foundation => 246, element => Int, dynamo => Int, manifold => Int, ring => Int, barn => Int, reactor => (my Int %)) Establishing Peer A With Element B: Performed modPow Operation (92 ^ 45 % 257) = 211 4 Challenges Herniate A Signal With 2 Convergent Spins But No Charge (Like A Neon) Performed modPow Operation (246 ^ 45 % 257) = 22 Performed modPow Operation (223 ^ 45 % 257) = 136 Performed modPow Operation (246 ^ 229 % 257) = 169 Performed modPow Operation (223 ^ 229 % 257) = 120 Established Elemental Accord At: 327 Finalizing Elemental Accord From Peer A With Element B: 4 Challenges Herniate A Signal With 2 Convergent Spins But No Charge (Like A Neon) Performed modPow Operation (211 ^ 15 % 257) = 22 Performed modPow Operation (140 ^ 15 % 257) = 169 Performed modPow Operation (211 ^ 246 % 257) = 136 Performed modPow Operation (140 ^ 246 % 257) = 120 Established Elemental Accord At: 327 Conjecture.new(isListener => Bool::False, base => 92, secret => 228, signal => 229, channel => 140, pole => 225, identity => 45, foundation => 211, element => 327, dynamo => Int, manifold => Int, ring => Int, barn => Int, reactor => (my Int %)) Conjecture.new(isListener => Bool::True, base => 92, secret => 31, signal => 246, channel => 223, pole => 81, identity => 15, foundation => 246, element => 327, dynamo => Int, manifold => Int, ring => Int, barn => Int, reactor => (my Int %)) Two Convergent Dynamos With Spin Establish A Non-Hamiltonian Triangulational Foundation (see Reimann). Let Us Derive A Manifold Base! Establishing Dynamo From Base, Signal, Element Performed modPow Operation (92 ^ 229 % 327) = 128 Establishing Dynamo From Base, Signal, Element Performed modPow Operation (92 ^ 246 % 327) = 46 Syncing To Peer Element Performed modPow Operation (46 ^ 229 % 327) = 46 Syncing To Peer Element Performed modPow Operation (128 ^ 246 % 327) = 46 (The Calibi-Yau-Reimann Manifold As Defined Here Exceeeds All Published Science) Conjecture.new(isListener => Bool::False, base => 92, secret => 228, signal => 229, channel => 140, pole => 225, identity => 45, foundation => 211, element => 327, dynamo => 128, manifold => 46, ring => Int, barn => Int, reactor => (my Int %)) Conjecture.new(isListener => Bool::True, base => 92, secret => 31, signal => 246, channel => 223, pole => 81, identity => 15, foundation => 246, element => 327, dynamo => 46, manifold => 46, ring => Int, barn => Int, reactor => (my Int %)) Here We Have Total Convergence With Double Ratchet/3-Diffie From Open Whisper Systems ----- Now We Go Off The Deep End Opening Manifold 46 With Carrier 8 Performed modPow Operation (8 ^ 46 % 327) = 46 Performed modPow Operation (46 ^ 46 % 327) = 172 Opening Manifold 46 With Carrier 8 Performed modPow Operation (8 ^ 46 % 327) = 46 Performed modPow Operation (46 ^ 46 % 327) = 172 Conjecture.new(isListener => Bool::False, base => 92, secret => 228, signal => 229, channel => 140, pole => 225, identity => 45, foundation => 211, element => 327, dynamo => 128, manifold => 46, ring => 46, barn => 172, reactor => (my Int %)) Conjecture.new(isListener => Bool::True, base => 92, secret => 31, signal => 246, channel => 223, pole => 81, identity => 15, foundation => 246, element => 327, dynamo => 46, manifold => 46, ring => 46, barn => 172, reactor => (my Int %)) Here We Have Symmetry But Not Biharmonic Symmetry (No Mass, No Reverb) Hashing Volt Identity Function For String: Configuration Performed modPow Operation (37 ^ 67 % 257) = 127 Performed modPow Operation (127 ^ 111 % 257) = 107 Performed modPow Operation (107 ^ 110 % 257) = 124 Performed modPow Operation (124 ^ 102 % 257) = 184 Performed modPow Operation (184 ^ 105 % 257) = 35 Performed modPow Operation (35 ^ 103 % 257) = 88 Performed modPow Operation (88 ^ 117 % 257) = 67 Performed modPow Operation (67 ^ 114 % 257) = 121 Performed modPow Operation (121 ^ 97 % 257) = 121 Performed modPow Operation (121 ^ 116 % 257) = 193 Performed modPow Operation (193 ^ 105 % 257) = 193 Performed modPow Operation (193 ^ 111 % 257) = 4 Performed modPow Operation (4 ^ 110 % 257) = 241 Hashing Volt Identity Function For String: Configuration Performed modPow Operation (37 ^ 67 % 257) = 127 Performed modPow Operation (127 ^ 111 % 257) = 107 Performed modPow Operation (107 ^ 110 % 257) = 124 Performed modPow Operation (124 ^ 102 % 257) = 184 Performed modPow Operation (184 ^ 105 % 257) = 35 Performed modPow Operation (35 ^ 103 % 257) = 88 Performed modPow Operation (88 ^ 117 % 257) = 67 Performed modPow Operation (67 ^ 114 % 257) = 121 Performed modPow Operation (121 ^ 97 % 257) = 121 Performed modPow Operation (121 ^ 116 % 257) = 193 Performed modPow Operation (193 ^ 105 % 257) = 193 Performed modPow Operation (193 ^ 111 % 257) = 4 Performed modPow Operation (4 ^ 110 % 257) = 241 Inducing Barn 172 By Ring 46 To Capacitance With Volt Identity 241 Performed modPow Operation (172 ^ 241 % 46) = 44 Inducing Barn 172 By Ring 46 To Capacitance With Volt Identity 241 Performed modPow Operation (172 ^ 241 % 46) = 44 Inducing Ampere 44 To Manifold/Ring 46/46 Performed modPow Operation (44 ^ 46 % 46) = 4 Inducing Ampere 44 To Manifold/Ring 46/46 Performed modPow Operation (44 ^ 46 % 46) = 4 Conjecture.new(isListener => Bool::False, base => 92, secret => 228, signal => 229, channel => 140, pole => 225, identity => 45, foundation => 211, element => 327, dynamo => 128, manifold => 46, ring => 46, barn => 172, reactor => (my Int %)) Conjecture.new(isListener => Bool::True, base => 92, secret => 31, signal => 246, channel => 223, pole => 81, identity => 15, foundation => 246, element => 327, dynamo => 46, manifold => 46, ring => 46, barn => 172, reactor => (my Int %)) The Ampere Has A Resistance Signature But The Henry Absolutely Does Not! (See What Is Shape?) Resisting Ampere 44 With Element/Channel 327/140 Performed modPow Operation (44 ^ 327 % 140) = 64 Resisting Ampere 44 With Element/Channel 327/140 Performed modPow Operation (44 ^ 327 % 140) = 64 To Exceed The Joule Is Proliferation. I Suggest You Do It Anyway (See Key/Signing/Salt) Sustaining For Element A Amplifying Ampere/Element/Channel: 64/327/140 Performed modPow Operation (64 ^ 327 % 140) = 64 Amplifying Ampere/Element/Channel: 64/327/140 Performed modPow Operation (64 ^ 327 % 140) = 64 Sustaining The Ohm Performed modPow Operation (64 ^ 327 % 140) = 64 Sustaining The Ohm Performed modPow Operation (64 ^ 327 % 140) = 64 Sustaining For Element B Amplifying Ampere/Element/Channel: 64/327/223 Performed modPow Operation (64 ^ 327 % 223) = 2 Amplifying Ampere/Element/Channel: 64/327/223 Performed modPow Operation (64 ^ 327 % 223) = 2 Sustaining The Ohm Performed modPow Operation (2 ^ 327 % 223) = 115 Sustaining The Ohm Performed modPow Operation (2 ^ 327 % 223) = 115 Discarded Ohm A Because B Is Listener Ohm A Might Be Useful For Spin? - Note Not A Real Nuclear Reactor, Play Around! Sustaining Dynamic Reaction Performed modPow Operation (115 ^ 140 % 223) = 41 Performed modPow Operation (115 ^ 223 % 140) = 115 Sustaining Dynamic Reaction Performed modPow Operation (115 ^ 223 % 140) = 115 Performed modPow Operation (115 ^ 140 % 223) = 41 Conjecture.new(isListener => Bool::False, base => 92, secret => 228, signal => 229, channel => 140, pole => 225, identity => 45, foundation => 211, element => 327, dynamo => 128, manifold => 46, ring => 46, barn => 172, reactor => (my Int % = :daiichi(41), :ichidai(115))) Conjecture.new(isListener => Bool::True, base => 92, secret => 31, signal => 246, channel => 223, pole => 81, identity => 15, foundation => 246, element => 327, dynamo => 46, manifold => 46, ring => 46, barn => 172, reactor => (my Int % = :daiichi(115), :ichidai(41)))
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