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''[https://youtu.be/Z7rd04KzLcg?t=7288 02:01:28]''<br> | ''[https://youtu.be/Z7rd04KzLcg?t=7288 02:01:28]''<br> | ||
And it ends up defining an operator that looks something like this, \(d_A^∗\) the adjoint of the shiab operator. | And it ends up defining an operator that looks something like this, \(d_A^∗\) the adjoint of the shiab operator. | ||
<div style="text-align: center; margin-left: auto; margin-right: auto;">$$ *(D_A^* \bigcirc\kern-0.940em\circ\kern-0.58em·\text{}\kern0.3em^* + * + ...)(\bigcirc\kern-0.940em\circ\kern-0.58em·\text{}\kern0.3em_\epsilon F_{A_\pi} + ...) $$</div> | <div style="text-align: center; margin-left: auto; margin-right: auto;">$$ *(D_A^* \bigcirc\kern-0.940em\circ\kern-0.58em·\text{}\kern0.3em^* + * + ...)(\bigcirc\kern-0.940em\circ\kern-0.58em·\text{}\kern0.3em_\epsilon F_{A_\pi} + ...) $$</div> | ||
''[https://youtu.be/Z7rd04KzLcg?t=7321 02:02:01]''<br> | ''[https://youtu.be/Z7rd04KzLcg?t=7321 02:02:01]''<br> |