kai sinclair's latest activity

  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    yes, the Weighted Average kind of works on small scales, low difference in ##\theta_n## mainly, and low ish difference in ##M_n##, if...
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    true, but as you can see there's less Trig involved which has two advantages, easier to calculate, even for computers and because it has...
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    just a note one this one, do you know of this formula for it? $$\sum_{n=1}^N {M_n \cdot \cos(\theta_n - \theta_t)} = M_t$$
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    can you show me how that would work with this given example ##V_1## = 10 units at +15° from reference ##V_2## = 70 units at +90° from...
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    so is what your talking about this formula? $$ \tan^{-1} \left( \frac { \sum_{n=1}^N {M_n \cdot \sin( \theta_n)} } {\sum_{n=1}^N {M_n...
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    I am unaware of this method, please elaborate So you think this is going to get needlessly complicated?
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    lets take a crack at this again this is the initial form of my Formula, and does not get the right answer only gets into the ball park...
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    I understand that the industry standard is the following formula, it's just my pattern recognition is saying there's a better way $$...
  • kai sinclair
    kai sinclair replied to the thread Vector/Phasor Addition.
    I would love to show you my work step by step but LaTeX is being annoying, but in short how to I calculate ##X_n## from only...
  • kai sinclair
    so I've made some progress to this endeavour and come up with this to calculate Vector Addition; a weight averaged with a bias $$\frac...
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