What does the scale reading represent?

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The scale reading can represent either weight or mass, depending on the type of scale used. A bathroom scale measures the force exerted by an object due to gravity, thus indicating weight, while balance scales measure mass by comparing forces. The reading will vary with gravitational strength; for example, on the moon, weight decreases but mass remains constant. To measure mass without gravity, one can use oscillating systems with known masses and spring constants. Ultimately, scales typically measure weight, and to find mass, one must account for gravitational acceleration.
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Say that an object is placed on a scale and it gives a reading. Does that number represent the object's weight (w = mg) or mass (just m)? I'm a bit confused because my physics teacher told me that it is measuring its mass...is this correct?

Many thanks.
 
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Depends what kind of scale it is. If it's a scale like a bathroom scale, it essentially gives you a measure of the force pressing against it. The reading itself could be a weight or a mass, since they are proportional. But use that scale on the surface of the moon and it will read less, since your weight would be less there. But your mass hasn't changed.
 
Most 'weighing machines' measure a force - due to a mass in the presence of a gravitational field. If you use a balance (see-saw) you are comparing the weight forces of two masses so you can eliminate any variation of g. If you use a spring balance, you are just measuring the weight force in the presence of an uncertain value of g.

However, you can measure the mass of an object in the absence of any g field or a table to place it on if you include the object in an oscillating arrangement of springs and known masses. The mass of the object can then be found by measuring the frequency of oscillation of the system. Of course, this would involve knowing the values of the other masses and the exact stiffnesses of the springs - but the method would work anywhere.
 
The scales measure the objects weight, because when you place the object on the scales it is influenced by the gravitational pull. Weight=mg therefore to get the mass, you must divide 9.81
Thanks
Z.C
 
Does the scale have a balance beam and a counterweight? Then it measures mass. If it doesn't, then it probably measures weight, which is a force.
 
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