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    An extinct marine invertebrate Morocco. Existed during the Cretaceous period. During fossilization the shell was replaced by an iron compound. — Stock Photo
    An extinct marine invertebrate Morocco. Existed during the Cretaceous period. During fossilization the shell was replaced by an iron compound.
    Digital illustration of asteroid approaching Cretaceous Earth before dinosaurs extermination. — Stock Photo
    Digital illustration of asteroid approaching Cretaceous Earth before dinosaurs extermination.
    Chalk cliff and beach — Stock Photo
    Chalk cliff and beach
    Hoodoos In Drumheller, Alberta — Stock Photo
    Hoodoos In Drumheller, Alberta
    Macrophotograph showing the iridescent colors of ammolite (Placenticeras sp.). Ammolite is composed of the fossilized shells of ammonites and gained gemstone status in 1981. This specimen is late Cretaceous in age (70 million years) and is from the B — Stock Photo
    Macrophotograph showing the iridescent colors of ammolite (Placenticeras sp.). Ammolite is composed of the fossilized shells of ammonites and gained gemstone status in 1981. This specimen is late Cretaceous in age (70 million years) and is from the B
    An extinct marine invertebrate Morocco. Existed during the Cretaceous period. During fossilization the shell was replaced by an iron compound. — Stock Photo
    An extinct marine invertebrate Morocco. Existed during the Cretaceous period. During fossilization the shell was replaced by an iron compound.
    An extinct marine invertebrate Morocco. Existed during the Cretaceous period. During fossilization the shell was replaced by an iron compound. — Stock Photo
    An extinct marine invertebrate Morocco. Existed during the Cretaceous period. During fossilization the shell was replaced by an iron compound.
    Chalk Headland Cliffs Along Coast — Stock Photo
    Chalk Headland Cliffs Along Coast
    Seven sisters chalk cliffs — Stock Photo
    Seven sisters chalk cliffs
    Macrophotograph showing the iridescent colors of ammolite (Placenticeras sp.). Ammolite is composed of the fossilized shells of ammonites and gained gemstone status in 1981. This specimen is late Cretaceous in age (70 million years) and is from the B — Stock Photo
    Macrophotograph showing the iridescent colors of ammolite (Placenticeras sp.). Ammolite is composed of the fossilized shells of ammonites and gained gemstone status in 1981. This specimen is late Cretaceous in age (70 million years) and is from the B
    Digital illustration of asteroid approaching Cretaceous Earth before dinosaurs extermination. — Stock Photo
    Digital illustration of asteroid approaching Cretaceous Earth before dinosaurs extermination.
    View up to the sky from inside a cave — Stock Photo
    View up to the sky from inside a cave
    Illustration of large asteroid colliding with Earth on Yucatan Peninsula in Mexico leading to dinosaurs extermination. — Stock Photo
    Illustration of large asteroid colliding with Earth on Yucatan Peninsula in Mexico leading to dinosaurs extermination.
    Macrophotograph showing the iridescent colors of ammolite (Placenticeras sp.). Ammolite is composed of the fossilized shells of ammonites and gained gemstone status in 1981. This specimen is late Cretaceous in age (70 million years) and is from the B — Stock Photo
    Macrophotograph showing the iridescent colors of ammolite (Placenticeras sp.). Ammolite is composed of the fossilized shells of ammonites and gained gemstone status in 1981. This specimen is late Cretaceous in age (70 million years) and is from the B
    Chalk Headland Cliffs Along Coast — Stock Photo
    Chalk Headland Cliffs Along Coast
    Illustration of large asteroid colliding with Earth on Yucatan Peninsula in Mexico leading to dinosaurs extermination. — Stock Photo
    Illustration of large asteroid colliding with Earth on Yucatan Peninsula in Mexico leading to dinosaurs extermination.

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