A walrus stays warm in the cold ocean.
or Penguins can stay warm in cold arctic waters.
That oil does not dissolve in water and oil's molecular structure has no dipole moment. Hence they are unable to form dipole-dipole bonds with polar molecules like water (hence oil does not mix with water)
Sedimentary rocks, such as sandstone, shale, and limestone, are most likely to result from the compaction and cementation of particles. These rocks form through the accumulation and lithification of sediments that have been weathered and eroded from pre-existing rocks.
Fishes would be harmed by changes to the ocean water (apex)
Yes, carbonized remains can provide information about the thickness of an organism by preserving some structural features like bones, shells, or plant stems. However, the level of detail that can be determined may vary depending on the preservation process and the type of organism. Additional methods such as CT scans or 3D imaging may be needed for a more accurate assessment of the thickness.
When warm and moist winds blow over snow-covered ground, the snow is likely to melt and turn into water. This may result in increased runoff and potential flooding, as well as causing the snow to become slushy and compacted.
Water cannot be absorbed through the surface of a leaf.
A walrus stays warm in the cold ocean.or Penguins can stay warm in cold arctic waters.
A walrus stays warm in the cold ocean.or Penguins can stay warm in cold arctic waters.
A walrus stays warm in the cold ocean.or Penguins can stay warm in cold arctic waters.
penguins can stay warm in cold arctic waters.
penguins can stay warm in cold arctic waters.
penguins can stay warm in cold arctic waters.
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Water cannot be absorbed through the surface of a leaf.
A walrus stays warm in the cold ocean.or Penguins can stay warm in cold arctic waters.
Water cannot be absorbed through the surface of a leaf
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