answer
If the density of a ball bearing is less than the density of glycerine oil, the ball bearing will float when placed in glycerine oil. This is because objects with lower density than the fluid they are placed in tend to float.
If the density of the ball bearing is less than the density of glycerine oil, the ball bearing will float on the surface of the glycerine oil. Objects with lower density than a liquid will float on that liquid due to buoyancy force.
To find the density of a ball bearing, you would typically measure its mass using a scale and then calculate its volume using a method like water displacement. Once you have both the mass and volume, you can divide the mass by the volume to find the density of the ball bearing.
You can determine the density of a ball bearing by measuring its mass using a scale and calculating its volume using a water displacement method or measuring its dimensions and calculating its volume. Once you have the mass and volume, divide the mass by the volume to get the density of the ball bearing.
If two perfect spheres of different sizes have the same mass, then the larger ball has a lower density and the smaller ball has a higher density. This is because density is the amount of mass in a given volume, and density is obviously higher if there is a smaller volume for a given amount of mass.
If the density of a ball bearing is less than the density of glycerine oil, the ball bearing will float when placed in glycerine oil. This is because objects with lower density than the fluid they are placed in tend to float.
If the density of the ball bearing is less than the density of glycerine oil, the ball bearing will float on the surface of the glycerine oil. Objects with lower density than a liquid will float on that liquid due to buoyancy force.
To find the density of a ball bearing, you would typically measure its mass using a scale and then calculate its volume using a method like water displacement. Once you have both the mass and volume, you can divide the mass by the volume to find the density of the ball bearing.
You can determine the density of a ball bearing by measuring its mass using a scale and calculating its volume using a water displacement method or measuring its dimensions and calculating its volume. Once you have the mass and volume, divide the mass by the volume to get the density of the ball bearing.
If two perfect spheres of different sizes have the same mass, then the larger ball has a lower density and the smaller ball has a higher density. This is because density is the amount of mass in a given volume, and density is obviously higher if there is a smaller volume for a given amount of mass.
The charge on the ball bearing is positive.
To calculate the number of iron atoms present in the stainless steel ball bearing, you first need to determine the mass of the ball bearing. This can be done by calculating the volume of the ball bearing using the radius provided. Once you have the volume, you can calculate the mass using the density. Then, you can determine the mass of iron in the ball bearing using the percentage of iron by weight. Finally, convert the mass of iron to the number of iron atoms using Avogadro's number.
A ball bearing is a stainless steel ball used in 'bearing races' to make a full bearing unit. Vet common in all machinery construction.
Ball Bearing - advertisement - was created in 1992.
deep grove ball bearing is Accumulate the load 90 degree but angular contact ball bearing 25,45,Ect degree
The ball is given to the other team.
BB stands for Ball Bearing