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??? What Is Gravity ???
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<blockquote data-quote="Einstein" data-source="post: 54869" data-attributes="member: 288"><p>Okay F = MA = Weight.</p><p> </p><p>The equation is supposed to represent an inertial acceleration. So let's do a visualization of an inertial acceleration just to see if everything matches up. I'm sitting in my car, I press down on the gas pedal causing an applied force on the driving wheels that propels the car forward. The car starts to accelerate in the forward direction. I notice the sensation of weight pressing me into the seat in the opposite direction of the acceleration. There appear to be three vectors. So lets write down this information using the rules applying to vectors.</p><p> </p><p>Applied force = F</p><p>Inertial weight = W</p><p>Acceleration = A</p><p> </p><p>F = -W + A</p><p> </p><p>This equation is fact. It represents something in the real world. But it doesn't seem to match F = MA. Hold on though. Let's try some algebraic manipulation to see if it is just an altered form. Remember the algebraic rule that whatever is done to one side of an equation must be done to the other side. So let's take a look and see what happens.</p><p> </p><p>F + W = W - W + A</p><p>which simplifies to</p><p>F + W = A</p><p> </p><p>Now Force and Weight can be combined to represent either force or weight so let's set F + W = F' therefore:</p><p> </p><p>F' = A</p><p> </p><p>Looks to me like it's getting close to F = MA but not quite. Remember the algebraic rule that whatever is done to one side of an equation must be done to the other side. So let's take a look and see what happens.</p><p> </p><p>F'M = MA</p><p> </p><p>Still no cigar. In fact the equation no longer represents something in the real world because I introduced mass. Something that is not in the original observation. But what is interesting is that using vector math we discovered that force is equivalent to acceleration. You don't have to believe me. You can go pick up an algebra book and research the rules for vectors and verify this for yourself.</p><p> </p><p>This is right out in the open for anyone to see. Yet it appears that we are all just blind sheep following the herd. This kind of made me wonder just why Newton would have done something like this. So naturally I had to get a copy of his book called the "Principia". Newton spoke and wrote Latin. So I decided to get both an original copy and a translated copy. I wanted to see for myself just how Newton did this. I read through the relevant sections in my search. I believe the Principia has been altered. Newton refers to centrifugal force being described as velocity squared divided by radius. Those are the dimensions of Acceleration. Apparently whoever did the alterations missed altering his centrifugal force statements. Get this book and see for yourself. There are copies in Latin and English available for free download on the net.</p><p> </p><p>So you might wonder what I think about the Higgs Boson being responcible for mass.</p><p> </p><p>Pfffft!</p></blockquote><p></p>
[QUOTE="Einstein, post: 54869, member: 288"] Okay F = MA = Weight. The equation is supposed to represent an inertial acceleration. So let's do a visualization of an inertial acceleration just to see if everything matches up. I'm sitting in my car, I press down on the gas pedal causing an applied force on the driving wheels that propels the car forward. The car starts to accelerate in the forward direction. I notice the sensation of weight pressing me into the seat in the opposite direction of the acceleration. There appear to be three vectors. So lets write down this information using the rules applying to vectors. Applied force = F Inertial weight = W Acceleration = A F = -W + A This equation is fact. It represents something in the real world. But it doesn't seem to match F = MA. Hold on though. Let's try some algebraic manipulation to see if it is just an altered form. Remember the algebraic rule that whatever is done to one side of an equation must be done to the other side. So let's take a look and see what happens. F + W = W - W + A which simplifies to F + W = A Now Force and Weight can be combined to represent either force or weight so let's set F + W = F' therefore: F' = A Looks to me like it's getting close to F = MA but not quite. Remember the algebraic rule that whatever is done to one side of an equation must be done to the other side. So let's take a look and see what happens. F'M = MA Still no cigar. In fact the equation no longer represents something in the real world because I introduced mass. Something that is not in the original observation. But what is interesting is that using vector math we discovered that force is equivalent to acceleration. You don't have to believe me. You can go pick up an algebra book and research the rules for vectors and verify this for yourself. This is right out in the open for anyone to see. Yet it appears that we are all just blind sheep following the herd. This kind of made me wonder just why Newton would have done something like this. So naturally I had to get a copy of his book called the "Principia". Newton spoke and wrote Latin. So I decided to get both an original copy and a translated copy. I wanted to see for myself just how Newton did this. I read through the relevant sections in my search. I believe the Principia has been altered. Newton refers to centrifugal force being described as velocity squared divided by radius. Those are the dimensions of Acceleration. Apparently whoever did the alterations missed altering his centrifugal force statements. Get this book and see for yourself. There are copies in Latin and English available for free download on the net. So you might wonder what I think about the Higgs Boson being responcible for mass. Pfffft! [/QUOTE]
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