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Debugging Epohul

Debugging Epohul

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hellow,I'm Hope, I obsess over quantum computing and I draw. quantum stuff : https://t.me/HilbertSpacee

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can you feel the love she has for me
can you feel the love she has for me

couldn't be more excited for this
couldn't be more excited for this

i'm so happy rn
i'm so happy rn

wasting my precious 10 minutes per month IBM's compute time and not getting the result I wanted hurts more
wasting my precious 10 minutes per month IBM's compute time and not getting the result I wanted hurts more

nvm it's completed hehe

waiting for more than 20 minute in queue for a task that takes almost 20 seconds #IBMQuantum #
waiting for more than 20 minute in queue for a task that takes almost 20 seconds #IBMQuantum #

making healthier choices is boring
making healthier choices is boring

to cleanse the qc spirit for a bit
to cleanse the qc spirit for a bit

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How to interpret quantum hardware specs - Number of qubits: how many physical qubits the chip has. (Note: "programmable" = th
How to interpret quantum hardware specs - Number of qubits: how many physical qubits the chip has. (Note: "programmable" = the ones you can run on, "physical" = total on the chip.) - Basis gates: the only gates the hardware can natively run. Your code gets transpiled so it's expressed using just these. - Readout error: the error during measurement. Lower is better. - 1Q / 2Q gate error: the noise each gate adds. Two-qubit gates are ~10Γ— noisier than single-qubit ones, so this is the number that judges a device. - CLOPS (Circuit Layer Operations Per Second): how many gate layers run per second. Throughput, like classical computers. Higher = faster (not more accurate). - T1 (energy relaxation): time for excited |1⟩ to decay to |0⟩. - T2 (dephasing): time before phase coherence between |0⟩ and |1⟩ is lost. The longer T1 and T2, the deeper the circuit you can run before noise wins. (the image is one of IBM device from https://quantum.cloud.ibm.com/computers?limit=10 ) #Note

this lab was good I learned a lot about hardware properties (gate errors, readout errors, coherence times), comparing IBM dev
this lab was good I learned a lot about hardware properties (gate errors, readout errors, coherence times), comparing IBM devices and worked on dynamic circuits.

this lab was good I learned a lot about hardware properties (gate errors, readout errors, coherence times), comparing IBM devices and worked on dynamic circuits.

this is gonna be fun #qiskitsummerschool
this is gonna be fun #qiskitsummerschool

THIS WAS AMAZING!!! seeing recursion, BFS, and binary search in the notebook was like reuniting with old friends I haven't se
THIS WAS AMAZING!!! seeing recursion, BFS, and binary search in the notebook was like reuniting with old friends I haven't seen in years

Why do LLMs not have a sense of time? Why does it think every message in the chat happens in the same day?

oh woow, first time finding binary search in qc apparently it helps in reducing the depth of GHZ circuit
oh woow, first time finding binary search in qc apparently it helps in reducing the depth of GHZ circuit

imma breath though this lab no issue #qiskitsummerschool #deadlineisclose
imma breath though this lab no issue #qiskitsummerschool #deadlineisclose

huge fan of her and her work

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Inside IBM Research

photo content

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red flags that recur in quantum coverage
red flags that recur in quantum coverage