Uniplanar Algebra: Being Part I of a Propædeutic to the Higher Mathematical AnalysisBerkeley Press, 1893 - 141페이지 |
도서 본문에서
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x 페이지
... formula 74 . Demoivre's theorem 76. The law of involution . 84 86 75. Relations between base and modulus 86 88 80. The logarithmic spiral . 81. Periodicity of exponentials . 77. The law of metathesis . 78. The law of indices 79. The ...
... formula 74 . Demoivre's theorem 76. The law of involution . 84 86 75. Relations between base and modulus 86 88 80. The logarithmic spiral . 81. Periodicity of exponentials . 77. The law of metathesis . 78. The law of indices 79. The ...
32 페이지
... formula : ± ( ± a ± b ) = ± ( ± a ) ± ( ± b ) , wherein the order of occurrence of the signs + and must be the same in the two members of the equation . -- 16. In Multiplication and Division . Construct upon OA and O M , Fig . 15 , the ...
... formula : ± ( ± a ± b ) = ± ( ± a ) ± ( ± b ) , wherein the order of occurrence of the signs + and must be the same in the two members of the equation . -- 16. In Multiplication and Division . Construct upon OA and O M , Fig . 15 , the ...
35 페이지
... proper factor sign , the more explicit form of statement contained in this equation is xb / a = a X b . The formula for the commutative law in multiplication and division LAWS OF ALGEBRAIC OPERATION . 35 In multiplication and division.
... proper factor sign , the more explicit form of statement contained in this equation is xb / a = a X b . The formula for the commutative law in multiplication and division LAWS OF ALGEBRAIC OPERATION . 35 In multiplication and division.
36 페이지
... formula , the same sign attaches to a or b on both sides of the equation . 19. Agenda : Theorems in Proportion . ( 1 ) . Prove that in a proportion the product of the means is equal to the product of the extremes . ( 2 ) . Prove that ...
... formula , the same sign attaches to a or b on both sides of the equation . 19. Agenda : Theorems in Proportion . ( 1 ) . Prove that in a proportion the product of the means is equal to the product of the extremes . ( 2 ) . Prove that ...
37 페이지
... formula last written , are any real magnitudes whatever , they may be replaced by their reciprocals , | a , | b , / c , Id : For the same reason , in the formula ( ± a ± b ) × ( ± c ) = ( ± a ) × ( ± c ) + ( ± b ) × ( ± c ) , X ( c ) ...
... formula last written , are any real magnitudes whatever , they may be replaced by their reciprocals , | a , | b , / c , Id : For the same reason , in the formula ( ± a ± b ) × ( ± c ) = ( ± a ) × ( ± c ) + ( ± b ) × ( ± c ) , X ( c ) ...
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a+ib addition and subtraction Addition Theorem affix Agenda amplitude angle AOQ arc AVQ arc-ratio assumed base CALIFORNIA circular sector co-ordinates commutative law complex quantities corresponding cosh COSK csch defined definition direction distance equal equation equilateral hyperbola expm exponential expressed factors formula functions geometric addition Goniometric Ratios Hence hyperbolic functions Hyperbolic Ratios hyperbolic sector imaginary indeterminate form integer inverse law of indices law of involution law of metathesis length logarithmic spiral logm metathesis modular normal modulus natural logarithms negative nth roots orthomorphosis parallel path plane polynomial positive Prop proportion PROPOSITION Prove the following quotient radius real axis real magnitudes real quantities reciprocal represent respectively roots sech sector sinh speed straight line tanh tensor tion triangle unit circle x+iy z-plane zero