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authorYuchen Pei <me@ypei.me>2019-03-14 11:18:18 +0100
committerYuchen Pei <me@ypei.me>2019-03-14 11:18:18 +0100
commitbbc5c5199114837ef77839d3cd145d6c6b0f97e6 (patch)
tree2852984a1eca47a800eb3bc5c4e3f02aec58b24c /posts
parent5d0f3619de0d1fd48477164838bb9c07499ec82e (diff)
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-rw-r--r--posts/2019-03-14-great-but-manageable-expectations.md4
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diff --git a/posts/2019-03-14-great-but-manageable-expectations.md b/posts/2019-03-14-great-but-manageable-expectations.md
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@@ -5,7 +5,7 @@ template: post
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-Let us continue with the study of differential privacy from [Part 1 of this post](2019-03-13-a-tail-of-two-densities.html).
+Let us continue with the study of differential privacy from [Part 1 of this post](/posts/2019-03-13-a-tail-of-two-densities.html).
Rényi divergence and differential privacy
-----------------------------------------
@@ -133,7 +133,7 @@ which is the same result as (6.8), obtained using the Chernoff bound of
the noise.
However, as we will see later, compositions will yield different results
-from those obtained from methods in [Part 1](2019-03-13-a-tail-of-two-densities.html) when considering Rényi dp.
+from those obtained from methods in [Part 1](/posts/2019-03-13-a-tail-of-two-densities.html) when considering Rényi dp.
**Claim 22 (Moment Composition
Theorem)**. Let $M$ be the adaptive composition of $M_{1 : k}$. Suppose