The amount of water that will travel through a small stone in 5 minutes depends on various factors such as the size of the stone, the pressure of the water flow, and the porosity of the stone. Without specific details, it is not possible to provide an exact amount of water that will pass through the stone in a given time.
Sound travels slower through stone compared to metal. This is because stone has a lower elasticity and density than metal, which causes the sound waves to propagate more slowly through it. Metal, with its high elasticity and density, allows sound waves to travel faster.
Sound travels faster in solids and liquids such as stone and water compared to air because the particles in solids and liquids are closer together, allowing sound waves to travel more efficiently through the denser medium. In air, the particles are more spread out, causing sound waves to travel at a slower pace due to the lower density of air molecules.
Sound can travel through most solids, including metals, wood, glass, and stone. The speed and efficiency of sound transmission can vary depending on the material's density and elasticity. Overall, denser and more rigid solids are better conductors of sound.
It is easier to lift a small stone than a big stone because small stones typically weigh less and require less force to lift. Additionally, smaller stones are easier to grip and handle compared to larger stones, allowing for better leverage during lifting.
A material through which light (or a certain color of light) won't pass through is said to be OPAQUE for light (or for that color of light). Most materials around us are opaque for visible light; only a few materials, such as air and other gases, water, and glass, are transparent, meaning they do let light through.
The rate at which sound travels through stone depends on the stone. Sound will travel faster through warm stone than cold stone.
Sound travels slower through stone compared to metal. This is because stone has a lower elasticity and density than metal, which causes the sound waves to propagate more slowly through it. Metal, with its high elasticity and density, allows sound waves to travel faster.
Small bottle.
The speed of sound is greater in stone than in water or air because sound travels faster in denser materials. Stone is more dense than water or air, allowing sound waves to propagate more quickly through its structure.
no .becoz sperms travel trough urethra not through ureter where stones are present
Light is a wave that travels through space across matter. The same way that waves travel from the center of a pond to the edges when you toss a stone in it.
In percutaneous nephrolithotomy or nephrolithotripsy, the surgeon makes a small incision in your back to remove kidney stones. He or she then puts a hollow tube into yourkidneyand a probe through the tube. In nephrolithotomy, the surgeon removes the stone through the tube. In nephrolithotripsy, he or she breaks the stone up and then removes the fragments of the stone through the tube.
Sound travels faster in solids and liquids such as stone and water compared to air because the particles in solids and liquids are closer together, allowing sound waves to travel more efficiently through the denser medium. In air, the particles are more spread out, causing sound waves to travel at a slower pace due to the lower density of air molecules.
A small round stone is called a pebble.
yes they are they have poison in the bigger claw if it pinches you then it delivers the poison through a small hole
They walked.
A graduated cylinder would be the appropriate lab equipment to find the volume of a small stone through water displacement method. Fill the graduated cylinder with water, measure the initial volume, add the stone and record the new volume to calculate the stone's volume.