A parachute helps you fall slow. 
A parachute helps things fall slowly. It catches the air to slow a fall. This makes the landing safe. 

A parachute is a tool used to slow a fall. It works by catching the air. This creates drag to help things land safely. 
People have thought about parachutes for a long time. In the year 852, a man used a large cloak to slow a fall. Later, thinkers like Leonardo da Vinci drew plans. 
Early parachutes were made of linen or silk. They often used heavy wooden frames. Later, makers used lighter materials. In 1907, Charles Broadwick made a parachute that fits in a backpack. This made it much easier to carry. Today, most parachutes are made of strong nylon. They come in many shapes, like domes or rectangles. 
A parachute is a device used to slow an object as it falls through the air. It works by creating drag, which is a force that pushes against the object's movement. This happens when the large surface of the parachute catches the air. By catching the air, the device creates aerodynamic lift to slow the descent. Parachutes help people jump safely from high aircraft. They are also used to slow cargo or help space capsules land on Earth. Some even help spacecraft land on other planets.
How a parachute works depends on its shape and material. Early versions used linen stretched over a heavy wooden frame. Later, makers used silk because it is light and strong. 

People have dreamed of using parachutes for many centuries. In AD 852, Armen Firman in Córdoba, Spain, used a large cloak to slow a fall. 

Real progress happened in the late 1700s. Louis-Sébastien Lenormand made the first public jump in 1783 in France. He created the word "parachute" in 1785. 


Today, parachutes are part of many different activities. They are essential for military paratroopers during training or missions. 

A parachute is a specialized device designed to slow an object's descent through an atmosphere. It achieves this by creating drag, which is the resistance encountered when an object moves through air. The device also utilizes aerodynamic lift to counteract gravity. This mechanism is essential for safely supporting people exiting aircraft at high altitudes. Beyond human use, parachutes serve many critical roles in science and logistics. They slow heavy cargo during drops and assist in the recovery of space capsules on Earth. They are even used to land spacecraft on other planets.
The physics of a parachute rely on the interaction between the canopy and the air. When a parachute opens, its large surface area catches air molecules. This contact creates drag, which acts in the opposite direction of the fall. This force pushes upward against the downward pull of gravity. To manage this descent, different shapes are used to control stability. Some designs are dome-shaped, while others are rectangular or inverted domes. To prevent the parachute from shaking violently, a vent can be added to the canopy. This vent allows some air to pass through, which helps eliminate oscillations. 
Parachutes have evolved through many distinct stages of design and material. Early versions were quite heavy and rigid. They often consisted of linen fabric stretched tightly over a wooden frame. In the late 1790s, inventors began using folded silk. Silk was a major advancement because it was both lightweight and very strong. By the mid-20th century, modern parachutes transitioned to using durable nylon. This material allowed for even more reliable and compact designs. Today, we see various specialized types, including the knapsack parachute and the drogue parachute. 
The history of the parachute began with early attempts at flight. In AD 852, Armen Firman in Córdoba, Spain, attempted to slow a fall using a large cloak. While he did not fly, the air in the cloak's folds prevented great injury. During the Renaissance, inventors began sketching purposeful designs. In the 1470s, Francesco di Giorgio Martini drew a conical canopy attached to a crossbar frame. Leonardo da Vinci later sketched a pyramidal design in his Codex Atlanticus. This design used a square wooden frame to hold the canopy open. These early concepts laid the groundwork for modern aeronautics. 
Significant milestones occurred during the 18th and 19th centuries. French inventor Louis-Sébastien Lenormand made the first recorded public jump in 1783. In 1785, he coined the term "parachute." He combined the Italian prefix "para," meaning to defend or resist, with the French word "chute," meaning a fall. In 1797, André Garnerin performed the first descent using a frameless silk parachute. Later, in 1907, Charles Broadwick introduced the backpack-style parachute. This design allowed the device to be folded into a pack. He used a static line attached to a balloon to pull the parachute out. 
Technological leaps continued into the 20th century with new applications. In 1911, Gleb Kotelnikov invented the knapsack parachute. In 1912, he also demonstrated the braking effects of a parachute by attaching one to a moving automobile. This led to the invention of the drogue parachute, which helps slow high-speed objects. During World War I, parachutes became essential for artillery observers in tethered balloons. These observers used parachutes to escape dangerous situations if their balloons were attacked. By 1912, Albert Berry made the first parachute jump from a fixed-wing aircraft in the United States. 
Today, the impact of parachute technology is visible across many fields. In the military, paratroopers use advanced equipment to deploy from large aircraft. In recreational settings, skydiving has become a popular sport. For space agencies, parachutes are vital for returning astronauts to Earth. They help capsules descend safely to splash down in the ocean. 
🖼️ Images & Media (18)
+ 6 more
More to explore
✨ What else?
Related topics you might enjoy
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.