How can you tell which object has more mass?
The tendency of an object to resist changes in its state of motion varies with mass. Mass is that quantity that is solely dependent upon the inertia of an object. The more inertia that an object has, the more mass that it has. A more massive object has a greater tendency to resist changes in its state of motion.
Does an object with more mass have more weight?
Mass is the measure of an object’s matter (what it’s made up of). The greater an object’s mass, the greater its gravitational force. The stronger the pull of gravity on an object, the greater its weight.
Does more density mean more weight?
Mass is actually more specific than weight. The baseball is denser than the rubber ball – it has more mass per unit of volume than the rubber ball. It has a higher density. Density = Mass/Volume also means that the larger the volume of an object compared to its mass, the less dense it is.
What is the weight of a body of mass 1 kg?
(ii) weight of a body of mass 1 kg is 1 kg wt=9.8N.
What is the weight of a 1 kilogram mass on the Earth g 9.8m S?
=1kg×9. 8m/s2=9. 8N.
What is the weight of 1 kg mass on Earth Class 9?
Thus, the weight force in dynes of 1 kg mass is =9. 8×105dynes. Was this answer helpful?
What is the weight of a body of mass 1 kg on Earth Class 9?
Solution : (i) mass of a body of weight 1 kg is one kilogram. (ii) weight of a body of mass 1 kg is 1 kg wt=9.8N.
Where will it be profitable to purchase 1 kg of sugar?
Thus, it is profitable to buy sugar at the equator than on poles. KEY CONCEPT: – Distance from the centre of the Earth to the poles is 6,356 km whereas from any point on the equator is 6,378 km.
Where would it be profitable to purchase 1 kg sugar at the equator or poles?
One kilogram of your sugar at the equator will weigh less than its actual weight. Note: The sugar particles in the package won’t increase, its measure on the weighing scale will increase due to which it will be priced at a higher value at the poles.
When you move from equator to pole What is the value of acceleration due to gravity?
In combination, the equatorial bulge and the effects of the surface centrifugal force due to rotation mean that sea-level gravity increases from about 9.780 m/s2 at the Equator to about 9.832 m/s2 at the poles, so an object will weigh approximately 0.5% more at the poles than at the Equator.