Depends on how big the can is. If you are talking about a soda can... well, the pressure of stomping your foot. next time try being more specific please ?!?!?! actually , used a scale and came up with 23 # using a drill press !
Full can? Average should be about 200-250 lbs pressure.
a lot
about 5000 thousand mm.
it takes 76 lbs of pressure to collapse/crush one's windpipe
It typically takes about 90 pounds per square inch (psi) of pressure to crush an aluminum can. This pressure is exerted evenly on all sides of the can, causing it to collapse.
2,500 pounds of pressure
Can you crush blood pressure pills
The pressure required to crush a crystal depends on its composition and structure. In general, crystals have high compressive strengths, so it would take a significant amount of force to crush them. The specific weight needed would vary based on the type of crystal and its size.
To test the effects of air pressure on crushability, you could use a controlled environment like a pressure chamber where you gradually increase or decrease air pressure while measuring the force needed to crush an object. Start by creating a baseline measurement at normal air pressure, then apply different levels of pressure and record the force required to crush the object at each level. Analyze the data to observe how air pressure impacts crushability.
The wolf jaw can produce 3,200 psi pressure which inables it to crush bones and such.
The pressure required to crush the Adam's apple, or thyroid cartilage, can vary depending on individual anatomy, but it generally requires a significant amount of force. Estimates suggest that it may take around 20 to 40 pounds of pressure to cause significant damage. However, the exact pressure needed can differ based on factors like age, health, and overall neck structure. It’s important to note that any such injury can have serious consequences.
Crushing a human foot would require a significant amount of force, usually measured in thousands of pounds per square inch. The exact amount of pressure needed can vary depending on the specific circumstances and the structure of the foot, but it generally involves a force far greater than what the human body can withstand.