No, a spring scale is used to measure weight, not mass. To measure mass, you would typically use a balance scale or electronic scale. Mass is a measure of the amount of matter in an object, whereas weight is the force acting on an object due to gravity.
A spring scale measures the force exerted on an object. When an object is hung from the scale, the scale's spring stretches or compresses, and the amount of deformation is used to determine the force exerted by the object.
When putting an object on a spring scale the pointer is going to show that objects weight. So the answer would be WEIGHT. Like for example when you are in your bathroom and you step on the scale , the pointer is going to show how much you weigh.
A spring scale is used to measure weight, which is the force acting on an object due to gravity. A balance scale is typically used to measure mass, which is the amount of matter in an object.
A spring scale is used to measure the force exerted on an object by gravity or by a person pulling on it. It measures this force in units of mass, such as grams or kilograms.
The force exerted by the mass on the spring scale is equal in magnitude but opposite in direction to the force measured by the spring scale. Therefore, the force exerted by the mass on the spring scale is 20 newtons.
A spring scale measures the force exerted on an object. When an object is hung from the scale, the scale's spring stretches or compresses, and the amount of deformation is used to determine the force exerted by the object.
A spring scale is used to measure the weight of an object by the stretching of a spring. It is commonly used in schools, laboratories, and households to measure the force exerted by an object due to gravity.
When putting an object on a spring scale the pointer is going to show that objects weight. So the answer would be WEIGHT. Like for example when you are in your bathroom and you step on the scale , the pointer is going to show how much you weigh.
A spring scale is used to measure weight, which is the force acting on an object due to gravity. A balance scale is typically used to measure mass, which is the amount of matter in an object.
A spring scale is used to measure force or mass
Weight is the property measured by a spring scale. That is Mass X Acceleration.
A spring scale is used to measure the force exerted on an object by gravity or by a person pulling on it. It measures this force in units of mass, such as grams or kilograms.
The force exerted by the mass on the spring scale is equal in magnitude but opposite in direction to the force measured by the spring scale. Therefore, the force exerted by the mass on the spring scale is 20 newtons.
A balanced scale, which compares the mass of one object with that of another.Mass is measured by physical balance.Weight is measured by a spring balance.
There are several methods to accurately measure mass, including using a balance scale, a spring scale, or a digital scale. These tools can provide precise measurements by comparing the mass of an object to a known standard.
A spring scale measures weight. It is dependent on the gravity, and so one's weight in space, or on the moon would be different based on the spring scale. A balance measures mass, and since the standards in a balance are the same no matter what the gravity is, then the mass remains constant. However, for all practical purposes, the gravity on earth is constant so the weight and mass of the objects would be the same.
A spring scale in itself does not measure mass; rather, it measures the amount of force (in Newtons) required to move an object. However, you can find the mass, provided you know the acceleration (how much the object is changing speed). Example: You use a spring scale on on object, and it gives you a measurement of 10 Newtons (N). To find the mass, you would use the following formula: m = f/a Where m is the mass (kilograms), f is the force (Newtons), and a is the acceleration (meters per second per second, or m/s2). So, if the force is 10N, and the acceleration (for the purposes of this example) is 5m/s2, then: m = 10/5 m = 2 So, the mass would be 2 kilograms (kg).