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-rw-r--r--content/know/concept/quantum-fourier-transform/index.pdc4
1 files changed, 2 insertions, 2 deletions
diff --git a/content/know/concept/quantum-fourier-transform/index.pdc b/content/know/concept/quantum-fourier-transform/index.pdc
index 5a3de7b..cfdbc07 100644
--- a/content/know/concept/quantum-fourier-transform/index.pdc
+++ b/content/know/concept/quantum-fourier-transform/index.pdc
@@ -178,7 +178,7 @@ excluding the swapping part to get the right order.
Here, $R_m$ means $R_\phi$ with $\phi = 2 \pi / 2^m$:
<a href="qft-circuit-noswap.png">
-<img src="qft-circuit-noswap.png" style="width:100%;display:block;margin:auto;">
+<img src="qft-circuit-noswap.png" style="width:100%">
</a>
Again, note how the inputs $\ket{x_j}$ and outputs $\ket{k_j}$ are in the opposite order.
@@ -186,7 +186,7 @@ The complete circuit, including the swapping at the end,
therefore looks like this:
<a href="qft-circuit-swap.png">
-<img src="qft-circuit-swap.png" style="width:85%;display:block;margin:auto;">
+<img src="qft-circuit-swap.png" style="width:85%">
</a>
For each of the $n$ qubits, $\mathcal{O}(n)$ gates are applied,