Tide times in Sf Mokelumne River at New Hope Bridge — CA, United States
CA, United States
Tue 3 Mar
| Time | Height | Type |
|---|---|---|
| 00:28 | 0.88m | Low tide |
| 06:17 | 1.61m | High tide |
| 12:44 | 1.13m | Low tide |
| 17:53 | 1.69m | High tide |
This week
| Date | High tide | Low tide |
|---|---|---|
| Tue 3 Mar | 06:17 (1.61m) / 17:53 (1.69m) | 00:28 (0.88m) / 12:44 (1.13m) |
| Wed 4 Mar | 06:49 (1.64m) / 18:35 (1.63m) | 00:58 (0.90m) / 13:28 (1.08m) |
| Thu 5 Mar | 07:22 (1.67m) / 19:20 (1.56m) | 01:26 (0.93m) / 14:14 (1.04m) |
| Fri 6 Mar | 07:57 (1.70m) / 20:08 (1.49m) | 01:54 (0.98m) / 15:01 (1.00m) |
| Sat 7 Mar | 08:33 (1.72m) / 21:03 (1.42m) | 02:22 (1.03m) / 15:51 (0.98m) |
| Sun 8 Mar | 10:12 (1.73m) / 23:14 (1.37m) | 03:47 (1.10m) / 17:41 (0.96m) |
| Mon 9 Mar | 10:55 (1.73m) | 04:09 (1.18m) / 18:33 (0.97m) |
| Tue 10 Mar | 00:41 (1.34m) / 11:47 (1.73m) | 04:32 (1.26m) / 19:27 (0.98m) |
| Wed 11 Mar | 02:08 (1.36m) / 12:45 (1.72m) | 05:30 (1.33m) / 20:25 (0.98m) |
| Thu 12 Mar | 03:34 (1.40m) / 13:44 (1.71m) | 07:56 (1.35m) / 21:24 (0.97m) |
Location information
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Tide times in Sf Mokelumne River at New Hope Bridge
Looking for tide information in Sf Mokelumne River at New Hope Bridge? Our comprehensive charts show you exactly when to visit.
Make the most of Sf Mokelumne River at New Hope Bridge's coastal environment with these tide-dependent activities:
High tide
Enough depth for water sports
Best conditions for safe swimming with deeper water
Calm waters perfect for SUP sessions
Low tide
Discover shells and sea treasures on exposed beaches
Collect worms and shellfish for fishing
Capture unique coastal landscapes
Understanding tides at Sf Mokelumne River at New Hope Bridge helps you stay safe and make the most of your visit. Tides follow a roughly 12-hour cycle, with two high tides and two low tides each day.
Be aware of local conditions at Sf Mokelumne River at New Hope Bridge. Some areas can become inaccessible during high tide.
Our tide predictions for Sf Mokelumne River at New Hope Bridge are calculated using astronomical data and local observations for maximum accuracy.