This is a pink shark. 
The goblin shark is a rare shark. 
The goblin shark is a rare shark from the deep sea. 
This shark has pink skin and a long, flat snout. Its snout has tiny parts called ampullae of Lorenzini. These help the shark feel small electric fields from prey.
When food is close, the shark uses a special way to eat. Its jaws can snap forward very fast. This happens because of elastic ligaments. These are like stretchy bands. They hold the jaws back like a catapult. When the shark bites, the bands let go. The jaws shoot out to grab fish or squid. 
Most adults grow to be 3 to 4 meters long. One large female was found in Taiwan. She weighed 110 kilograms. These sharks live in many oceans. They like to stay in deep water. Adults usually live deeper than young sharks.
The goblin shark is a rare animal from the deep sea. 
This shark has a very special way of catching food. It uses its long snout to find prey. The snout has tiny parts called ampullae of Lorenzini. These help the shark sense small electric fields from other animals. 
Scientists first described this shark in 1898. An American scientist named David Starr Jordan wrote about it. He found an immature male shark in Sagami Bay. This shark was near Yokohama, Japan. The shark had been found by a man named Alan Owston. Jordan named the shark Mitsukurina owstoni to honor two men. He named it after Alan Owston and Professor Kakichi Mitsukuri. The name "goblin shark" comes from a Japanese myth. It is named after a creature with a long nose and red face.
Goblin sharks live in many different parts of the world. They can be found in the Atlantic and Indo-Pacific oceans. They also live in the waters near New Zealand and Australia. 
Learning about this shark helps us understand the deep ocean. It shows how animals can change to live in the dark. The shark has a flabby body and small fins. This means it is a slow, sluggish swimmer. It uses its large, oily liver to float easily. This helps it drift toward prey without being seen.
The goblin shark, known scientifically as Mitsukurina owstoni, is a rare species of deep-sea shark. 
To catch its prey, the goblin shark uses a highly specialized mechanical process. The shark's long snout is covered in ampullae of Lorenzini. These are sensory organs that detect minute electric fields produced by nearby animals. Once prey is detected, the shark uses its jaws like a catapult. Two pairs of elastic ligaments are located near the mandibular joint. These ligaments hold the jaws under tension while they are retracted. When the shark strikes, the ligaments release this tension. This action snaps the jaws forward at high speeds. 
The feeding mechanism of the goblin shark is incredibly efficient for a slow swimmer. The combined protrusion of the upper and lower jaws is 2.1 to 9.5 times greater than in other sharks. Interestingly, the lower jaw moves much faster than the upper jaw. It moves at a velocity about two times greater because it swings upward during the strike. The maximum velocity of these jaws can reach 5 meters per second. This rapid movement allows the shark to act as an ambush predator. It can drift toward prey using its large, oily liver for buoyancy. This helps the shark stay neutrally buoyant and avoid detection.
Goblin sharks are found in all three major oceans. They live in the Atlantic, the Indo-Pacific, and the waters around Oceania.
The history of describing this shark involves some scientific confusion. In 1898, the American ichthyologist David Starr Jordan first described the species. He based his work on an immature male caught in Sagami Bay, Japan. The specimen was originally acquired by the naturalist Alan Owston. Jordan named the species Mitsukurina owstoni to honor both Owston and Professor Kakichi Mitsukuri. For many years, scientists struggled to classify the shark correctly. Because the jaws were often fixed in different positions during preservation, some researchers thought they were seeing different species. Modern science has since corrected these errors through better anatomical study.
While most adults measure between 3 and 4 meters, they can grow much larger. 
Studying the goblin shark provides important connections to the broader field of evolutionary biology. It is classified as the most basal member of the order Lamniformes, which are known as mackerel sharks. This means it represents one of the earliest branches of this group. Genetic studies have confirmed this basal position. The shark retains several primitive traits that have changed in other modern sharks. By looking at its anatomy, scientists can learn about the history of shark evolution. The existence of this species helps researchers understand how life has persisted in the deep ocean for millions of years.
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