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authorTavian Barnes <tavianator@tavianator.com>2021-02-24 14:17:12 -0500
committerTavian Barnes <tavianator@tavianator.com>2021-02-24 14:17:44 -0500
commit645dad796b4a99de3ab2813b1b4edb4c7f246ba9 (patch)
treea31fe72a40f4f47115c6cc2310f2deefdd34e3e5 /src/lib.rs
parent62fe810c118c37b596c5329b9360fec2b33b04b0 (diff)
downloadacap-645dad796b4a99de3ab2813b1b4edb4c7f246ba9.tar.xz
docs: Fix a typo in the top-level documentation
Diffstat (limited to 'src/lib.rs')
-rw-r--r--src/lib.rs4
1 files changed, 2 insertions, 2 deletions
diff --git a/src/lib.rs b/src/lib.rs
index 28ebdd1..6402da2 100644
--- a/src/lib.rs
+++ b/src/lib.rs
@@ -4,8 +4,8 @@
//!
//! The notion of distances between points is captured by the [`Proximity`] trait. Its
//! [`distance()`] method returns a [`Distance`], from which the actual numerical distance may be
-//! retrieved with [`value()`]. These layers of abstraction allow `acap` to work with generically
-//! with different distance functions over different types.
+//! retrieved with [`value()`]. These layers of abstraction allow `acap` to work generically with
+//! different distance functions over different types.
//!
//! There are no restrictions on the distances computed by a [`Proximity`]. For example, they don't
//! have to be symmetric, subadditive, or even positive. Implementations that do have these