diff --git a/draft-ietf-rats-eat.html b/draft-ietf-rats-eat.html
index 12573806..12d11415 100644
--- a/draft-ietf-rats-eat.html
+++ b/draft-ietf-rats-eat.html
@@ -5702,7 +5702,7 @@
UUIDs are limited to 128 bits which may not be enough for some future
use cases.¶
Today, cryptographic-quality random numbers are available from common computing platforms.
-In particular, hardware randomness sources where introduced in CPUs between 2010 and 2015.
+In particular, hardware randomness sources were introduced in CPUs between 2010 and 2015.
Operating systems and cryptographic libraries make use of this hardware.
Consequently, there is little need for protocols to construct random numbers from multiple sources on their own.¶
Version 4 UUIDs do allow for use of such cryptographic-quality
diff --git a/draft-ietf-rats-eat.txt b/draft-ietf-rats-eat.txt
index 6ee8589d..0003800d 100644
--- a/draft-ietf-rats-eat.txt
+++ b/draft-ietf-rats-eat.txt
@@ -4061,9 +4061,9 @@ B.2. No Use of UUID
use cases.
Today, cryptographic-quality random numbers are available from common
- computing platforms. In particular, hardware randomness sources
- where introduced in CPUs between 2010 and 2015. Operating systems
- and cryptographic libraries make use of this hardware. Consequently,
+ computing platforms. In particular, hardware randomness sources were
+ introduced in CPUs between 2010 and 2015. Operating systems and
+ cryptographic libraries make use of this hardware. Consequently,
there is little need for protocols to construct random numbers from
multiple sources on their own.
diff --git a/draft-ietf-rats-eat.xml b/draft-ietf-rats-eat.xml
index 90dbe7c8..82b7bd74 100644
--- a/draft-ietf-rats-eat.xml
+++ b/draft-ietf-rats-eat.xml
@@ -3976,7 +3976,7 @@ implementations be able to receive 256-bit UEIDs.
UUIDs are limited to 128 bits which may not be enough for some future
use cases.
Today, cryptographic-quality random numbers are available from common computing platforms.
-In particular, hardware randomness sources where introduced in CPUs between 2010 and 2015.
+In particular, hardware randomness sources were introduced in CPUs between 2010 and 2015.
Operating systems and cryptographic libraries make use of this hardware.
Consequently, there is little need for protocols to construct random numbers from multiple sources on their own.
Version 4 UUIDs do allow for use of such cryptographic-quality
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