Tue 3 Mar

☀️ Sunrise 06:14
🌙 Sunset 17:37
🌕 full_moon (99%)
Time Height Type
00:28 3.21m High tide
08:45 2.18m Low tide
12:51 3.39m High tide
21:08 2.13m Low tide

This week

Date High tide Low tide
Tue 3 Mar 00:28 (3.21m) / 12:51 (3.39m) 08:45 (2.18m) / 21:08 (2.13m)
Wed 4 Mar 01:15 (3.26m) / 13:38 (3.35m) 09:32 (2.20m) / 21:49 (2.19m)
Thu 5 Mar 02:00 (3.29m) / 14:24 (3.30m) 10:15 (2.24m) / 22:26 (2.25m)
Fri 6 Mar 02:43 (3.30m) / 15:08 (3.23m) 10:55 (2.27m) / 22:59 (2.30m)
Sat 7 Mar 03:25 (3.28m) / 15:53 (3.13m) 11:31 (2.29m) / 23:29 (2.32m)
Sun 8 Mar 05:08 (3.24m) / 17:36 (3.02m) 13:08 (2.29m)
Mon 9 Mar 05:51 (3.17m) / 18:19 (2.91m) 01:00 (2.33m) / 13:51 (2.27m)
Tue 10 Mar 06:36 (3.09m) / 19:03 (2.82m) 01:28 (2.32m) / 14:44 (2.26m)
Wed 11 Mar 07:25 (3.03m) / 19:50 (2.75m) 01:32 (2.31m) / 15:46 (2.25m)
Thu 12 Mar 08:18 (2.99m) / 20:42 (2.71m) 01:52 (2.30m) / 16:44 (2.23m)

42.7728°, -71.0831°
America/New_York
🌕 full_moon (99%)

Tide times in Merrimack R 03 Miles US Rt 125 at Haverhill Ma

Find accurate tide schedules for Merrimack R 03 Miles US Rt 125 at Haverhill Ma. Whether for fishing, sailing, or beach walks, get the information you need.

Discover what you can do in Merrimack R 03 Miles US Rt 125 at Haverhill Ma based on the tide schedule:

High tide

Swimming

Best conditions for safe swimming with deeper water

Sailing

Ideal for boat departures and arrivals

Jet skiing

Enough depth for water sports

Low tide

Bait digging

Collect worms and shellfish for fishing

Rock pooling

Explore tidal pools teeming with marine life

Photography

Capture unique coastal landscapes

The tidal patterns at Merrimack R 03 Miles US Rt 125 at Haverhill Ma are predictable and follow lunar cycles. Neap tides occur around quarter moons, while spring tides happen during full and new moons.

Plan your activities around the tide schedule at Merrimack R 03 Miles US Rt 125 at Haverhill Ma. Allow plenty of time to return before the tide turns.

Our tide predictions for Merrimack R 03 Miles US Rt 125 at Haverhill Ma are calculated using astronomical data and local observations for maximum accuracy.