mass and weight are closely related because mass affects the weight of an object experiencing the effects of gravity. Weight is the measure of the force of gravity on an object's mass, while mass is the measure of how much matter there is in an object.
The mass of an object is a measure of the amount of matter it contains. The object's mass determines its weight (force of gravity acting on it) and influences its inertia (resistance to changes in motion). The relationship between an object's mass and its weight is given by the equation: weight = mass x gravity.
No, mass or weight are not measures of laziness of an object. Mass is a measure of how much matter is in an object, while weight is the force of gravity acting on an object's mass. Laziness is a human characteristic and is not related to an object's physical properties.
Mass is the amount of matter in an object, while weight is the force of gravity acting on that object. Mass is a measure of inertia, while weight is a measure of the gravitational pull on an object. They are related because weight is dependent on mass and the strength of gravity. The formula to calculate weight is weight mass x gravity.
Mass and weight are related but not the same. Mass is the amount of matter in an object, while weight is the force of gravity acting on that object. Weight is dependent on mass and the acceleration due to gravity.
Mass is fundamentally related to the amount of matter in an object. It is a measure of the inertia of an object, representing its resistance to acceleration.
The weight = mass x acceleration
mass. Weight is the force exerted on an object due to gravity, and it is directly proportional to an object's mass. This means that the weight of an object increases as its mass increases.
The mass of an object is a measure of the amount of matter it contains. The object's mass determines its weight (force of gravity acting on it) and influences its inertia (resistance to changes in motion). The relationship between an object's mass and its weight is given by the equation: weight = mass x gravity.
No. Mass and weight are two separate but related properties. Mass is the amount of matter within object. Weight is the amount of force an object experiences due to gravity. So and object's mass depends on the mass of the object and the strength of gravity where it is. Weight= mass x gravity.
No, mass or weight are not measures of laziness of an object. Mass is a measure of how much matter is in an object, while weight is the force of gravity acting on an object's mass. Laziness is a human characteristic and is not related to an object's physical properties.
Mass is the amount of matter in an object, while weight is the force of gravity acting on that object. Mass is a measure of inertia, while weight is a measure of the gravitational pull on an object. They are related because weight is dependent on mass and the strength of gravity. The formula to calculate weight is weight mass x gravity.
Mass and weight are related but not the same. Mass is the amount of matter in an object, while weight is the force of gravity acting on that object. Weight is dependent on mass and the acceleration due to gravity.
Mass is fundamentally related to the amount of matter in an object. It is a measure of the inertia of an object, representing its resistance to acceleration.
No. The weight by an object is related to the object's mass. Inertia is a separate effect, also due to mass - but there is no such thing as a "pull of inertia".
Weight and mass are related but not the same. Mass is a measure of the amount of matter in an object, while weight is the force exerted on an object by gravity. Mass is constant, while weight can vary depending on the strength of gravity.
True. Mass and weight are related through the effect gravity has on an object. Mass represents the amount of matter in an object, while weight is the force of gravity acting on that object. Weight is directly proportional to mass and the acceleration due to gravity.
Mass and weight are related through gravity. Mass is a measure of the amount of matter in an object, while weight is the force of gravity acting on that object. Weight is directly proportional to mass and the acceleration due to gravity.