Drakkith said:
I don't understand the first paragraph, and I would answer Yes to the 2nd.
Drakkith said:
Chemical and nuclear reactions remove mass from the original fuels as they react, or bind, and transfer that mass elsewhere to produce work in the form of heat or moving particles. (Both of those can be stated as "forms" of energy)
This is along_the_lines(approximately) of what I'm referring to in paragraph 1.
You are at the beginnings of showing what the measurement implies in terms of data that is available to all men, in direct perceptual experience - experiences(not inferences from it) which are not open to proof and are therefore axiomatic. This is what the term "understand" properly refers to.
So far, my attempt to do this with the concept "energy" : Is an abstract property(it is not indirectly perceived - its a way of regarding something in certain existing relationships/states). Which means that it names, without reference to their specific types or conditions, all instances of matter possessing the attribute/property of motion(and its potential). Viewed this way motion/action is a synonym of energy - where energy adds the recognition of mass and force(cause and effect).
I would like to stress that the term abstract means - finding what is in common between two or more other abstractions.
What makes me uncertain about this explanation is my inability to reduce 'work' in the same way; to figure out if it is an arbitrary mathematical construct or something specific in reality.
In regard to paragraph 2:
- Since currently we are not aware of the physical nature of gravity - AE's space-time is a useful mathematical tool much like a vector, not a physical description.(Same can be said for electric and magnetic fields).
- Since we are currently not aware what causes inertia - it is not a gravitational effect, nor is it fully explained by macroscopic resistance forces.
- Since quarks and gluons, as well as strong and weak nuclear forces, are postulates or logical amendments to account for unforeseen results - not experimentally derived.
- Since we are not aware of the physical nature of an electron - at the moment its treated, mathematically, as a point-particle - which is useful, but not a physical description
- And what we know of all of these phenomena is their effects on other entities, and the extent of these effects in terms of their motion.
I suggest, no one is in a position to claim the nature of mass, and it is infect a hindrance to do so - since it creates the false impression that we actually know all these things.
And it is also exciting to think that so much still stands undiscovered!