A hurricane is a big storm. 
A hurricane is a big, spinning storm. 
An Atlantic hurricane is a large, spinning storm. 
We use different names for these storms. In the Atlantic, we call them hurricanes. In the Western Pacific, people call them typhoons. In other oceans, they are called cyclones. We can group storms by how strong they are. A tropical storm has winds of at least 39 mph. A hurricane has winds of 75 mph or more. 
An Atlantic hurricane is a massive, spinning storm system. 
How these storms work involves moving air and warm water. Most storms begin as tropical waves in warm ocean areas. These waves happen several hundred miles north of the equator. The storm moves along paths guided by the air around it. Scientists say a hurricane is like a leaf in a stream. 
We have used different names for these storms for a long time. Before the mid-1900s, people named storms in a random way. This changed in 1953 when we started using a set list. Now, we use specific names from a predetermined list for each storm. If a storm causes a lot of damage, its name is retired. This means that name is never used again for a future storm. This helps people keep track of dangerous weather events clearly.
There are many important numbers to know about these storms. On average, 14 named storms occur each year in the Atlantic. Out of those, 7 usually become hurricanes. About 3 of those become major hurricanes, which are Category 3 or higher. 
Understanding hurricanes helps us see how the whole world is linked. For example, weather in the Pacific Ocean can change Atlantic storms. Events called El Niño or La Niña affect how many storms form. El Niño can increase wind shear and lead to fewer Atlantic storms. In contrast, La Niña can cause an increase in storm activity. 
An Atlantic hurricane is a powerful type of tropical cyclone. 
These storms follow specific stages of development and intensity. A system is first classified as a tropical storm when its one-minute maximum sustained winds reach at least 39 mph (63 km/h). To be called a hurricane, the storm must reach winds of 75 mph (119 km/h) or higher. Scientists also categorize them by intensity using barometric pressure or wind speed. The strongest hurricanes are classified as Category 5. These intense storms can cause massive changes to the environment when they make landfall.
Understanding how a hurricane moves is essential for safety. The movement of a hurricane is determined by flows in the troposphere, which is the atmospheric layer near the ground. Neil Frank, a former director of the National Hurricane Center, used helpful analogies to explain this. He described a hurricane as being like a leaf carried along in a stream. Another way to think of it is a brick moving through a river of air. Airflow around high-pressure and low-pressure systems steers the storm. For example, the subtropical ridge is a high-pressure system that usually extends east-to-west. This ridge often pushes storms westward with a slight tendency to move north. If an upper trough weakens this ridge, the storm may turn toward the pole and eventually curve northeast into the westerlies.

Most Atlantic hurricanes form from tropical waves in warm ocean waters. These waves typically appear several hundred miles north of the equator. The Coriolis force, which helps create rotation, is often too weak near the equator to start a storm. Storms frequently develop in the Caribbean, the Gulf of Mexico, or the tropical Atlantic. Some even form near the Cape Verde Islands. These are known as Cape Verde hurricanes. They can also strengthen over the Gulf Stream if water temperatures exceed 80°F. Occasionally, cold fronts or upper-level lows can cause storms to form further north.

There is a clear seasonal pattern to these events. The Atlantic hurricane season officially runs from June 1 to November 30. About 97 percent of all Atlantic tropical cyclones form during this window. On average, 14 named storms occur during each season. Of these, 7 typically become hurricanes and 3 become major hurricanes, which are Category 3 or higher. The peak of activity usually happens around mid-September. While the season has specific dates, storms can occasionally develop in the "off-season." For instance, Tropical Storm Ana formed in May 2021.
History shows us how intense these storms can truly be. Hurricane Wilma holds the record for the strongest Atlantic hurricane. It reached a central pressure of 878 mbar in October 2005. This makes it the strongest tropical cyclone recorded worldwide outside of the Pacific. Before Wilma, Hurricane Gilbert held the record for 17 years. Other notable storms include the 1935 Labor Day hurricane, which was the strongest documented storm before 1950. It tied with Hurricane Melissa with a pressure of 892 mbar. These measurements are vital for scientists to understand the limits of storm power.

Finally, hurricanes are connected to larger global systems. There is a strong link between Atlantic activity and the Pacific Ocean's climate. El Niño events increase wind shear, which makes it harder for storms to form. This usually leads to less activity in the Atlantic. Conversely, La Niña events decrease wind shear and can increase storm activity. Even the position of the Azores High can change where storms go. According to the Azores High hypothesis, shifting pressure patterns can steer more hurricanes toward the North American coast or the Gulf coast. This shows how the entire planet's atmosphere is interconnected.
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