You can throw an egg on a concrete floor without breaking it by ensuring that the egg does not make direct contact with the floor. For example, if you throw it from a low height or use a soft material like a cloth or cushion to catch it, the impact can be absorbed, preventing the shell from cracking. Additionally, you could use a technique that involves tossing it in a way that it lands softly, like underhand throwing.
you cant it is impossible
wrap it in a piece of paper shaped as a cone with the egg at the point.
If that's a riddle, then the answer is: Any way you want! However you drop the egg, you won't break the concrete floor!! Hey, it doesn't say "without breaking THE EGG"!!!!! :D But if that's NOT a riddle, which it probably is, you would have to hold the egg REALLY LOW, and I mean REALLY, and then drop it. Or, you could try wrapping the egg with stuff like bubble wrap, or putting a carpet on the concrete floor. But, usually this is just a funny joke! :)
I don't know sorry!
Eggshells are designed to be strong and flexible, dispersing force applied to them. When an egg is dropped from a low height onto a hard surface like concrete, the force is spread out over the surface of the egg instead of being concentrated in one area, helping to prevent it from breaking.
you can't by it's self. You can wrap it in some sort of protective something,, but you can only drop it from so far up.
Ummm throw it away. are you sure its not a chicken egg?
because the egg is fragile
If there is mold. yer u can by the smell and if the shell is braking
With your hand
To drop a raw egg on a concrete floor without breaking it, you can cushion the impact by placing it in a small container filled with a thick layer of corn syrup or honey. This will absorb the shock and provide protection to the egg when it hits the floor. Alternatively, you can wrap the egg in multiple layers of soft materials like tissue paper or a sock before dropping it.
There is more force behind the egg thrown further distance than the egg thrown from small distance. That and gravity acceleration.