The Atlantic salmon is a big fish. 

The Atlantic salmon is a big fish. 
They live in cold rivers and the ocean. Most start in small streams. They grow up and move to the sea. 
In the sea, they eat small fish. This helps them grow very large. They can even return to the sea to lay eggs again.
Some salmon stay in lakes. They spend their whole lives in fresh water. These are called landlocked salmon.
People catch them for food. We must work to keep their homes safe.
The Atlantic salmon is a large fish. 
Young salmon go through many stages. First, they are alevin. They stay near the eggs and use a yolk sac for food. Next, they are fry. They leave the breeding area to find food. Then they become parr. These fish have blue and red spots. Finally, they become smolt. They turn silver to hide in the sea. 
Some salmon are landlocked. This means they stay in lakes their whole lives. Atlantic salmon are very tasty. People catch them for food. This can hurt their numbers. People also build things like dams that block their path. Many countries now work to protect them. 
The Atlantic salmon is a large and impressive fish. 
Life for a salmon happens in several clear steps. First, they hatch as tiny alevin with a yolk sac for food. Next, they become fry and start hunting for tiny creatures. After that, they grow into parr with blue and red spots. To get ready for the ocean, they become smolt. During this time, they change their color to shiny silver. 
Scientists have studied these fish for a very long time. A Swedish zoologist named Carl Linnaeus named them in 1758. He used the scientific name Salmo salar. This name might mean "resident of salt water." 
Atlantic salmon live in many different places around the world. They are found in Europe and the northeastern coast of North America. In Europe, they live from Spain to Russia. 
These fish are very important to many people and animals. People enjoy eating salmon because it is very nutritious. 

The Atlantic salmon, known scientifically as *Salmo salar*, is a large ray-finned fish. 
The life cycle of the Atlantic salmon involves several distinct biological stages. It begins as an alevin, a tiny fish that stays in the breeding grounds. Alevins use nutrients from a yolk sac to grow and develop their gills. Once the sac is absorbed, they become fry and begin hunting for small invertebrates. As they grow, they enter the parr stage, characterized by blue and red spots for camouflage. To prepare for the ocean, they undergo smoltification. This is a process where they develop a silver-blue sheen and undergo endocrinological changes. These changes help their bodies adapt to the salt in seawater. Once they are smolt, they begin swimming with the current toward the sea.
Life in the ocean provides the salmon with opportunities for massive growth. In the sea, they feed on plankton and small fish like herring or capelin. 
Atlantic salmon are iteroparous, which is a special trait compared to Pacific salmon. This means they can survive the spawning process and return to the sea to spawn again in a later year. About 5% to 10% of adults successfully return to the ocean to repeat the cycle. These repeat spawners can grow to extremely large sizes. In 1925, a salmon caught in Norway set the record for the longest Atlantic salmon ever recorded. In 1960, a salmon caught in Scotland became the heaviest recorded in scientific literature. 
Humans have interacted with these fish for centuries. The Swedish zoologist Carl Linnaeus gave the species its scientific name in 1758. The name *Salmo salar* likely means "resident of salt water." Because salmon meat is highly nutritious, it is a prized food in many cultures. 
To address these declines, many countries have started conservation efforts. These programs aim to protect the rivers and habitats the fish need to survive. 

Understanding the Atlantic salmon requires looking at the connection between water temperature and survival. They are cold-water fish and are very sensitive to changes in temperature. As the climate warms, some populations have moved north, such as those colonizing Svalbard between 2002 and 2006. The survival of the species depends on the health of both the freshwater rivers and the saltwater currents. By studying their migration and biology, scientists work to balance human needs with the survival of this remarkable species.
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