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authorPrefetch2022-09-27 21:20:05 +0200
committerPrefetch2022-09-28 20:51:35 +0200
commit03accd13c0a6ec4de2d8001edf3ce7553f831160 (patch)
tree59840d0c443752c6fef87f74597e032db91cd219 /content/know/concept/deutsch-jozsa-algorithm
parent7e0b6df586da7c79df3853ba0bdc9f98c10af839 (diff)
Clean up CSS, minor design changes
Diffstat (limited to 'content/know/concept/deutsch-jozsa-algorithm')
-rw-r--r--content/know/concept/deutsch-jozsa-algorithm/index.pdc4
1 files changed, 2 insertions, 2 deletions
diff --git a/content/know/concept/deutsch-jozsa-algorithm/index.pdc b/content/know/concept/deutsch-jozsa-algorithm/index.pdc
index a3acaf4..d8dce8d 100644
--- a/content/know/concept/deutsch-jozsa-algorithm/index.pdc
+++ b/content/know/concept/deutsch-jozsa-algorithm/index.pdc
@@ -46,7 +46,7 @@ To do this, we use the following quantum circuit,
where $U_f$ is the oracle we query:
<a href="deutsch-circuit.png">
-<img src="deutsch-circuit.png" style="width:48%;display:block;margin:auto;">
+<img src="deutsch-circuit.png" style="width:48%">
</a>
Due to unitarity constraints,
@@ -147,7 +147,7 @@ other possibilities are assumed to be impossible.
This algorithm is then implemented by the following quantum circuit:
<a href="deutsch-jozsa-circuit.png">
-<img src="deutsch-jozsa-circuit.png" style="width:52%;display:block;margin:auto;">
+<img src="deutsch-jozsa-circuit.png" style="width:52%">
</a>
There are $N$ qubits in initial state $\ket{0}$, and one in $\ket{1}$.