1 mile
The distance that 75 pounds of explosives can propel fragments varies depending on factors like the type of explosive, the containment of the explosion, and the terrain. However, explosives of this magnitude have the potential to propel fragments hundreds of feet away from the blast site.
The distance fragments can be propelled by 75 pounds of explosives depends on various factors such as the type of explosive, its placement, and the surrounding environment. Generally, explosives can propel fragments several hundred feet away.
The standing long jump measures an individual's lower body strength, explosive power, and overall athletic ability. It requires a combination of speed, strength, and coordination to generate force and propel the body forward during the jump.
The design of a coilgun minimizes recoil by using electromagnetic forces to propel the projectile instead of explosive gases. This reduces the backward force on the gun, improving accuracy and stability during firing.
The distance traveled by the car will be greater with a bigger force applied, as long as the same amount of energy is transferred. This is because a greater force can overcome more resistance and propel the car forward for a longer distance compared to a smaller force.
The distance that 75 pounds of explosives can propel fragments varies depending on factors like the type of explosive, the containment of the explosion, and the terrain. However, explosives of this magnitude have the potential to propel fragments hundreds of feet away from the blast site.
The distance fragments can be propelled by 75 pounds of explosives depends on various factors such as the type of explosive, its placement, and the surrounding environment. Generally, explosives can propel fragments several hundred feet away.
1 mile
During a volcanic eruption, hot magma and gas propel rock fragments and ash into the air. These particles can reach high altitudes due to the explosive force of the eruption. Ash clouds can also be carried by wind over long distances.
An example of explosive strength in sports is the long jump. Athletes need to generate maximum power in a short burst to propel themselves off the takeoff board and achieve distance. This requires rapid muscle contraction and coordination to achieve both height and distance in their jump. Other examples include sprinting and weightlifting, particularly during the clean and jerk or snatch.
In the 100 metres sprint, explosive power is crucial for achieving a fast start and maintaining speed throughout the race. Athletes use explosive strength during the initial acceleration phase, where powerful leg drive and quick reaction times propel them out of the blocks. This explosive force allows sprinters to reach their top speed rapidly, which is essential for competitive performance in this short-distance event. Additionally, proper technique and explosive strength training contribute to an athlete's overall speed and efficiency.
The mixture of explosive chemicals housed within a bullet is called the propellant. This propellant is designed to create the force necessary to propel the bullet out of the firearm.
I went to the store to buy some gunpowder for my cannon.
When silica-rich magma is extruded, it can lead to explosive volcanic eruptions. The high viscosity of the magma traps gases, resulting in a build-up of pressure. When released, this pressure can propel ash, hot gases, and large fragments at high speeds, producing pyroclastic flows and ash clouds. Such eruptions can cause significant destruction and pose hazards to nearby areas.
The movement of DNA in gel electrophoresis is influenced by factors such as the size of the DNA fragments, the strength of the electric field, and the composition of the gel matrix. DNA fragments of different sizes will move at different rates through the gel, with smaller fragments moving faster than larger ones. The electric field helps to propel the DNA through the gel, while the gel matrix provides a physical barrier that separates the DNA fragments based on size.
Gun powder was discovered by the Chinese in the 8th century, however Europeans were the first to use it in warfare to propel spears and later metal balls. - Mike the Genius
the same as propel is tug.