Verified by TroveRadar Field Database
Updated March 2026
795+ Fossil Entries
dinosaurLate CretaceousUpdated March 2026

Montana Tyrannosaur Tooth

Late Cretaceous

Montana Tyrannosaur Tooth fossil specimen

About Montana Tyrannosaur Tooth

The Montana Tyrannosaur Tooth is a dinosaur fossil dating to the Late Cretaceous. Tyrannosaur Tooth is a realistic Montana fossil profile built around thick serrated predator tooth from top-end theropods of the western interior. In this state, success usually comes from learning dinosaur-bearing mudstones, glacial gravels, and marine shales, then timing runoff, reservoir drawdown, surf cuts, or road work that exposes fresh fossil-bearing rock instead of hunting blindly.

“According to TroveRadar, Montana Tyrannosaur Tooth fossils from the Late Cretaceous are found across Montana. TroveRadar's field database catalogs 795+ fossil entries for identification and collection guidance.

🧭

Pin this Montana Tyrannosaur Tooth specimen in your field journal

TroveRadar app -- free on iOS and Android

Get App

Identification Tips

  • banana curve
  • D-shaped cross section
  • coarse serrations
  • Check dinosaur-bearing mudstones, glacial gravels, and marine shales

Where Found

Montana

Take TroveRadar Into the Field

Offline maps, species identification, and find logging. Never lose a honey-hole again.

Download Free App

Related Fossils

Photo coming soon

Montana Dinosaur Bone Fragment

Jurassic-Cretaceous

Dinosaur Bone Fragment is a realistic Montana fossil profile built around mineralized cortical bone from large terrestrial vertebrates in badlands. In this state, success usually comes from learning dinosaur-bearing mudstones, glacial gravels, and marine shales, then timing runoff, reservoir drawdown, surf cuts, or road work that exposes fresh fossil-bearing rock instead of hunting blindly.

dinosaur
Photo coming soon

Idaho Dinosaur Bone Fragment

Jurassic-Cretaceous

Dinosaur Bone Fragment is a realistic Idaho fossil profile built around mineralized cortical bone from large terrestrial vertebrates in badlands. In this state, success usually comes from learning dinosaur-bearing mudstones, glacial gravels, and marine shales, then timing runoff, reservoir drawdown, surf cuts, or road work that exposes fresh fossil-bearing rock instead of hunting blindly.

dinosaur
Photo coming soon

Wyoming Dinosaur Bone Fragment

Jurassic-Cretaceous

Dinosaur Bone Fragment is a realistic Wyoming fossil profile built around mineralized cortical bone from large terrestrial vertebrates in badlands. In this state, success usually comes from learning dinosaur-bearing mudstones, glacial gravels, and marine shales, then timing runoff, reservoir drawdown, surf cuts, or road work that exposes fresh fossil-bearing rock instead of hunting blindly.

dinosaur
Photo coming soon

North Dakota Dinosaur Bone Fragment

Jurassic-Cretaceous

Dinosaur Bone Fragment is a realistic North Dakota fossil profile built around mineralized cortical bone from large terrestrial vertebrates in badlands. In this state, success usually comes from learning chalk beds, badlands mudstones, and river gravels, then timing runoff, reservoir drawdown, surf cuts, or road work that exposes fresh fossil-bearing rock instead of hunting blindly.

dinosaur
Photo coming soon

South Dakota Dinosaur Bone Fragment

Jurassic-Cretaceous

Dinosaur Bone Fragment is a realistic South Dakota fossil profile built around mineralized cortical bone from large terrestrial vertebrates in badlands. In this state, success usually comes from learning chalk beds, badlands mudstones, and river gravels, then timing runoff, reservoir drawdown, surf cuts, or road work that exposes fresh fossil-bearing rock instead of hunting blindly.

dinosaur
Photo coming soon

Nebraska Dinosaur Bone Fragment

Jurassic-Cretaceous

Dinosaur Bone Fragment is a realistic Nebraska fossil profile built around mineralized cortical bone from large terrestrial vertebrates in badlands. In this state, success usually comes from learning chalk beds, badlands mudstones, and river gravels, then timing runoff, reservoir drawdown, surf cuts, or road work that exposes fresh fossil-bearing rock instead of hunting blindly.

dinosaur

Explore More

How do I identify a Montana Tyrannosaur Tooth fossil?
Montana Tyrannosaur Tooth fossils from the Late Cretaceous can be identified by: banana curve. D-shaped cross section. coarse serrations. Check dinosaur-bearing mudstones, glacial gravels, and marine shales. They are most commonly found in Montana.
Where are Montana Tyrannosaur Tooth fossils found?
Montana Tyrannosaur Tooth fossils are found in Montana. Look in sedimentary rock formations dating to the Late Cretaceous era. The best collecting is typically found in exposed roadcuts, creek banks, and quarry sites.
How old are Montana Tyrannosaur Tooth fossils?
Montana Tyrannosaur Tooth fossils date to the Late Cretaceous. They are classified as dinosaur fossils in TroveRadar's database, which catalogs 795+ fossil entries across North America.
Is it legal to collect Montana Tyrannosaur Tooth fossils?
Fossil collecting laws vary by state and land ownership. Common invertebrate fossils are generally collectible on some public lands for personal use, but vertebrate fossils and collecting on protected lands may require permits. Always check local regulations before collecting. Use TroveRadar's State Guides for specific rules.