A big rocket was made long ago. 
A long time ago, people built a large rocket. 

The V-2 rocket was a very important machine. It was the first modern ballistic missile. A ballistic missile is a rocket that follows a set path through the air. 
Scientists in Germany built the V-2 during World War II. Wernher von Braun led much of the work. The rocket used a liquid-propellant engine to fly. This means it used liquid fuel and liquid oxygen.
A special pump pushed the fuel into a chamber. Inside the chamber, the fuel burned to make power. This power pushed the rocket up the sky. The rocket moved faster than the speed of sound.
On June 20, 1944, a V-2 reached a very high altitude. This height was 100 kilometers. Scientists call this the edge of space. This made the V-2 the first man-made object to travel into space. 
The war was a hard time. Many people died during the attacks. Many others died while making the rockets in factories. After the war, many countries studied the V-2. They used its parts to help build new rockets for space flight.
The V-2 rocket was a very important machine. It was the world's first modern ballistic missile. A ballistic missile is a rocket that follows a set path through the air. 

How did the rocket work? It used a liquid-propellant rocket engine to fly. The rocket carried a mixture of 75% ethanol and 25% water as fuel. It also carried liquid oxygen as an oxidizer. 
Many people worked to make the V-2 possible. A scientist named Wernher von Braun led the work. He was interested in rockets since he was a teenager. He even built a homemade toy rocket car once. Later, he worked at the Peenemünde Army Research Center. Other scientists like Walter Dornberger and Walter Riedel also helped. They used ideas from an American named Robert H. Goddard. The rockets were guided by a computer and special spinning tools called gyros. These tools helped the rocket stay on its path. 
Building these rockets had a very high cost. The rockets were made at a site called Mittelwerk. Many people died while making them. About 12,000 laborers and prisoners died during production. 
After the war ended, the V-2 changed the world of science. Many countries wanted to learn how it worked. The United States, United Kingdom, France, and the Soviet Union all studied the technology. Through a program called Operation Paperclip, teams captured the rocket parts. This technology helped people build better missiles later. It also helped humans learn how to fly into space. The V-2 was a difficult and sad invention, but it led to the space age.
The V-2 rocket, originally named Aggregat-4 (A4), was the world's first practical, modern ballistic missile. A ballistic missile is a rocket that follows a predetermined path, much like a thrown ball. 

The propulsion system of the A4 relied on a complex liquid-propellant rocket engine. The rocket used a mixture of 75% ethanol and 25% water, known as B-Stoff, as its fuel. To allow the fuel to burn in space, it also carried liquid oxygen (LOX), called A-Stoff, as an oxidizer. 

Engineers used several specific methods to keep the engine from melting during flight. One method was regenerative cooling, where the fuel helped manage heat. They also used film cooling, which admitted alcohol through four rings of small perforations under slight pressure. This created a protective layer within the combustion chamber and exhaust nozzle. The water in the fuel mixture also played a vital role. It reduced the flame temperature and acted as a coolant by turning into steam. This helped reduce thermal stress on the engine parts.
To stay on course, the V-2 used a sophisticated guidance system. It featured four external rudders on the tail fins and four internal graphite vanes located in the jet stream. 
The development of the A4 was led by Wernher von Braun at the Peenemünde Army Research Center. Von Braun had been interested in rockets since his youth, even building a homemade toy rocket car. He worked alongside other key figures like Walter Dornberger and Walter Riedel. The project was heavily influenced by the research of American physicist Robert H. Goddard. By late 1941, the Peenemünde center had mastered the essential technologies for the A4. These included large liquid-fuel engines, supersonic aerodynamics, and gyroscopic guidance. 
However, the production of these weapons involved great human suffering. The rockets were constructed at the Mittelwerk site using forced labor. Approximately 12,000 laborers and concentration camp prisoners died during the production process.
Even though the V-2 was a weapon of war, it holds a unique place in space history. On 20 June 1944, a V-2 rocket reached an altitude of 100 kilometers. Because 100km is the recognized edge of space, the V-2 became the first artificial object to travel into space. 

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