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Yes, but this one is correct, if the spring scale is properly calibrated at its location.anorlunda said:SI spring scales are labeled in kg, not Newtons.
Yes, but this one is correct, if the spring scale is properly calibrated at its location.anorlunda said:SI spring scales are labeled in kg, not Newtons.
It is not a mistake at all. In engineering, we distinguish between a pound force (lbf) and a pound mass (lbm). Confusing, maybe. But not a mistake.Dale said:Yes, I agree. The mistaken belief that the pound is a unit of force comes directly from the engineering community. I have even had engineering textbooks that incorrectly asserted that as fact. I don’t know how a simple mistake in the engineering literature turned into the common view held by non-engineers.
It is not a mistake to use lbf as a unit of force and lbm as a unit of mass. It is a mistake to use lb as a unit of force.The Fez said:It is not a mistake at all. In engineering, we distinguish between a pound force (lbf) and a pound mass (lbm). Confusing, maybe. But not a mistake.
In my entire college-student and -teaching career, intro physics courses always used the pound as a unit of force. I don't have a copy of H&R handy, but I do have Serway & Vuille's College Physics (8th edition, 2009). In section 1.1, "Standards of Length, Mass and Time", it mentions thejbriggs444 said:When I was in school in the 70's in the U.S., it was common for physics textbooks to preach that the pound was unequivocally a unit of force. I believe that Halliday and Resnick clung to this practice religiously at least into the 90's. However, I have no references to offer in support of this claim.
In section 4.3, "Newton's Second Law", it states:[...]U.S. customary system, in which the units of length, mass and time are the foot, slug, and second.
Then follows a table of SI and U.S. customary units of mass, acceleration and force, which lists the slug as the U.S. customary unit of mass. These may be the only two places in the book that mention the slug. It doesn't even appear in the index.In the U.S. customary system, the unit of force is the pound.
Yes, but how much gravity? The now antiquated kilogram-force was defined as the force exerted by gravity on one kilogram of mass. They specified the strength of gravity: 9.80665 m/s2. Even though there is no place on Earth where ##g## has that constant value as it varies with time. It was introduced so that people could use units of mass to measure force.Chestermiller said:1lb force is the force exerted by gravity on 1 lb mass.
Agreed.Mister T said:Yes, but how much gravity? The now antiquated kilogram-force was defined as the force exerted by gravity on one kilogram of mass. They specified the strength of gravity: 9.80665 m/s2. Even though there is no place on Earth where ##g## has that constant value as it varies with time. It was introduced so that people could use units of mass to measure force.
No one ever established such a "standard value" for ##g## to be used to define the pound force. But that doesn't stop people from using the pound (a unit of mass) to measure force.
I used to tell aspiring freshman physicists:LT72884 said:Summary:: understanding mass and mass as a force(weight)
so how do we really measure mass?
Moral: steer clear of Imperial Units and Sloppy Engineers; move to Europe(??) - for the units and not the Engineers, who are all as bad as each other.JT Smith said:It's still potentially ambiguous and confusing.
A bargain, I tell you. Over here we only get cubic yards.sophiecentaur said:Moral: steer clear of Imperial Units and Sloppy Engineers; move to Europe(??) - for the units and not the Engineers, who are all as bad as each other.
Ask a company to deliver Three metres of concrete to your house and they will pour out 3m3 for you.

From what I hear, DIY materials and equipment are cheaper in US than here (UK). And everyone seems to have a bigger workshop too - that's really unfair!jbriggs444 said:A bargain, I tell you. Over here we only get cubic yards.
!And then promising Mars probes crash, because NASA uses metric and programmers Imperial units (I think in this case m vs. ft)...BvU said:Look at it from the bright side: in all those underdeveloped countries that haven't been forced to adopt metrication, the scientists are a lot handier changing units, dealing with conversion constants and what have you.
##\ ##

Ah, now you're straying dangerously close to chemistry.LT72884 said:thats what I am trying to figure out. I am 104Kg but what does that mean? 1Kg is 1000g yes, but again, what does that actually mean. How many atoms is in 1Kg of me, or something? Do all objects that have a mass of 1Kg have the same number of atoms? if not, then how can 1Kg be constant? IE, 1Kg of water have same amount of atoms of 1Kg sand?
Grams is used as a WEIGHT measurement outside of the science community and in everyday life.LT72884 said:Summary:: understanding mass and mass as a force(weight)
Been thinking about mass today and came up with a question. Why is that objects on this Earth describe its weight in Kg, g, mg, Mg? IE 2.2Lbs is 1Kg. So why do we name the 1Kg to be mass, but the 2.2Lbs we call weight. Both have to be a unit of force if there is a conversion factor between the two numbers. if 1Kg IS 2.2 lbs, then 1Kg is also considered weight because a 1.3Kg jar of honey is NOT 1.3Kg on the moon or anywhere else.
we know mass to be what we are made of, atoms, etc. so when and how decided it to be a unit of force?
so how do we know what really is. How do i know what my mass really is? Some say my mass is 104Kg, but that is purely based on a gravitational constant of 9.81.
so how do we really measure mass?
thanks
If you are talking about bathroom scales, they are too imprecise for anyone to say whether they measure force or mass. The number that is presented could be pounds-force or it could be pounds-mass.Digcoal said:Grams is used as a WEIGHT measurement outside of the science community and in everyday life.
I failed to include "legal for commerce" with science as specific instances where kg is used for mass and not weight.jbriggs444 said:If you are talking about bathroom scales, they are too imprecise for anyone to say whether they measure force or mass. The number that is presented could be pounds-force or it could be pounds-mass.
If you are talking about a scale that is legal for commerce, it measures mass. It is calibrated and certified to do so.
You can also determine the mass of an object using the original scales humans used long ago: a known mass on one side and the undetermined mass on the other. Just good old leverage and chunks of matter; no shaking required.hutchphd said:I used to tell aspiring freshman physicists:
If you want to measure the weight of an object, lift it (from the surface of the earth)
If you want to know the mass, try to shake it.
.
I would suggest a much more mundane reason: Because the buyer and seller need to agree on amounts of goods that will satisfy their agreements.Digcoal said:The reason commerce uses mass is because it is the direct measurement used to calculate fuel costs for shipping.
Not everything is an evil conspiracy. Mass is used because it is conveniently standardizable. A force standard be a poor substitute.Digcoal said:They use mass when they are concerned about more and are privy to the distinction. Therefore, updating common parlance is important so that everyday consumers can also be privy to these tricks.
kg is a unit of mass.LT72884 said:Summary:: understanding mass and mass as a force(weight)
Been thinking about mass today and came up with a question. Why is that objects on this Earth describe its weight in Kg, g, mg, Mg? IE 2.2Lbs is 1Kg. So why do we name the 1Kg to be mass, but the 2.2Lbs we call weight. Both have to be a unit of force if there is a conversion factor between the two numbers. if 1Kg IS 2.2 lbs, then 1Kg is also considered weight because a 1.3Kg jar of honey is NOT 1.3Kg on the moon or anywhere else.
we know mass to be what we are made of, atoms, etc. so when and how decided it to be a unit of force?
so how do we know what really is. How do i know what my mass really is? Some say my mass is 104Kg, but that is purely based on a gravitational constant of 9.81.
so how do we really measure mass?
thanks
It is because scales measure opposing forces (Newtons) and are calibrated to report calculated masses (kg). The confusion is further exacerbated by common parlance involving asking for the WEIGHT of something and providing the calculated MASS given by a scale.Quester said:I started reading this thread because I recently became somewhat befuddled while working on a physics problem of my own.
When I went through physics courses back in the dark ages, the terms lbf and lbm did not exist. The terms used were lb for weight, which was regarded as a force due to the acceleration of gravity applied to 1 slug (the term used for mass). When I started seeing the lbf and lbm terms, I merely substituted them for the earlier terms.
However, my consternation came about when I first encountered the term "kg" used to refer to both "mass" and weight. I see examples all over the web of people asserting that 1kg of mass weighs 1 kg, which I cannot reconcile. I know that 1kg of mass removed thousands of miles from the nearest significant center of gravity will not weigh 1kg. The term "Newton" makes sense to me (when it is used) as it distinguishes between mass and force. When the term "kg" is used for both weight and mass, it can become confusing.
Perhaps I am still confused. Why are scales calibrated in kilograms (or grams, etc.) and not Newtons? Doesn't 1kg of mass weigh about 9.8 Newtons?