The mass of any object is its attraction by gravity. If the ball is attracted by gravity, and the attraction is measured by scales, we might say that the ball has a weight of five kilograms, or a mass of five kilograms.
We can put it another way by saying that mass is the property of a body that causes it to have weight in a gravitational field.
The mass of the rubber band will stay the same when it is stretched.
The mass of a rubber band can vary depending on its size and thickness. On average, a standard rubber band typically weighs around 1-2 grams.
Rubber density is typically measured by determining its mass and volume. First, a sample of rubber is weighed using a precise scale to obtain its mass. Next, the volume can be measured using water displacement or calculated from its dimensions if the rubber is in a regular shape. The density is then calculated by dividing the mass by the volume (density = mass/volume).
96 g
The mass affects the stretch of a rubber band because heavier objects apply more force, causing the rubber band to stretch further due to the increased tension. The greater mass increases the gravitational pull on the rubber band, leading to more deformation and elongation.
No, the mass of the rubber ball would remain the same on the moon as it is on Earth. Mass is a measure of the amount of matter in an object and is independent of the gravitational field it is in. However, the weight of the rubber ball would be less on the moon due to the moon's weaker gravitational pull.
never! they both have the same mass.
You can change the vibration speed of a string or rubber band by adjusting the tension in the material or by changing its mass. Increasing tension or reducing mass typically increases the vibration speed, while decreasing tension or increasing mass typically decreases the vibration speed.
The volume of the stopper can be calculated by subtracting the initial volume of the water from the final volume. In this case, the volume of the rubber stopper would be 30.9 ml - 25 ml = 5.9 ml. Now, divide the mass of the rubber stopper (8.46 g) by its volume (5.9 ml) to find its density. Density = Mass/Volume, so the density of the rubber stopper would be 8.46g / 5.9ml = 1.43 g/ml.
Metal plates feel heavier than rubber because metal is denser and has a higher mass per unit volume compared to rubber. This means that for the same size object, the metal plate will weigh more than the rubber plate.
a test rubber stopper is used to close the tops of test tubes and flasks.It's like a cork to close off narrow-mouthed things like bottles, test tubes and flasks, except it's made of rubber and not cork.
because cricket ball has greater mass