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Computerworld 1996 March
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1994-12-13
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10KB
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317 lines
;Credits go to all members of the Coteric Continuum:
; Phong = Tom Schumm
; Dan the Math+(Man)² = Dan Laursen
; Aquatic Nusiance = Ryan Mahoney
VerLineia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like a julia
z = z + p1
z = Sqr(z)
real(z) <= 4 ; Different escape boundry
}
HorLineia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like a julia
z = z + p1
z = Sqr(z)
imag(z) <= 4 ; Different escape boundry
}
Multia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z)*real(z) <= 4 ; Different escape boundry
}
Summia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z)+real(z) <= 4 ; Different escape boundry
}
SummAbsia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
abs(imag(z))+abs(real(z)) <= 4 ; Different escape boundry
}
AbsSummia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
abs(imag(z)+real(z)) <= 4 ; Different escape boundry
}
Parabolaia1(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= sqr(real(z))+4 ; Different escape boundry
}
Parabolaia2(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= 16-sqr(real(z)) ; Different escape boundry
}
Hyperbolaia1(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
sqr(imag(z)) >= (sqr(real(z))-16) ; Different escape boundry
}
Hyperbolaia2(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
sqr(imag(z)) <= (sqr(real(z))+16) ; Different escape boundry
}
Sineia01(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= sin(real(z))+4 ; Different escape boundry
}
Sineia02(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
5*sin(Lastsqr) <= 4 ; Different escape boundry
}
Sineia03(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
Lastsqr <= 4+sin(10*Lastsqr) ; Different escape boundry
}
Sineia04(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
Lastsqr <= 4+sin(20*Lastsqr) ; Different escape boundry
}
Sineia05(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
Lastsqr <= 4+sin(30*Lastsqr) ; Different escape boundry
}
Sineia06(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
sqr(imag(z)-sin(real(z))) <= 16-sqr(real(z)) ; Different escape boundry
}
Sineia07(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
sqr(imag(z)-sin(2*real(z))) <= 16-sqr(real(z)) ; Different escape boundry
}
Sineia08(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
sqr(imag(z)-sin(2*real(z))) <= 16-sqr(real(z)+sin(real(z))) ; Different escape boundry
}
Sineia09(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
sqr(imag(z)-sin(2*real(z))) <= 16-sqr(real(z)+sin(imag(z))) ; Different escape boundry
}
Sineia10(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
(imag(z)-sin(2*real(z)))^3 <= 16-sqr(real(z)+sin(imag(z))) ; Different escape boundry
}
Sineia11(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
sqr(imag(z)-sin(2*real(z))) <= 64-(real(z)+sin(imag(z)))^3 ; Different escape boundry
}
Sineia12(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
(imag(z)-sin(2*real(z)))^5 <= 16-sqr(real(z)+sin(imag(z))) ; Different escape boundry
}
Sineia13(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
(imag(z)-sin(2*real(z)))^7 <= 16-sqr(real(z)+sin(imag(z))) ; Different escape boundry
}
SineTangentia1(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
tan(imag(z)-sin(2*real(z))) <= 16-sqr(real(z)+sin(imag(z))) ; Different escape boundry
}
SineTangentia2(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
tan(imag(z)-sin(2*real(z))) <= 16-sqr(real(z)+sin(2*imag(z))) ; Different escape boundry
}
SineTangentia3(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
tan(imag(z)-sin(4*real(z))) <= 16-sqr(real(z)+sin(2*imag(z))) ; Different escape boundry
}
Cosecantia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= 4/sin(real(z)) ; Different escape boundry
}
Cosineia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= cos(real(z))+4 ; Different escape boundry
}
Secantia(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= 4/cos(real(z)) ; Different escape boundry
}
AbsArcTangentia1(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= abs(1/tan(real(z))) ; Different escape boundry
}
AbsArcTangentia2(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= abs(1/tan(real(z))+4) ; Different escape boundry
}
AbsArcTangentia3(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= abs(1/tan(real(z)))+4 ; Different escape boundry
}
Tangentia1(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= tan(real(z)) + 2 ; Different escape boundry
}
Tangentia2(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= tan(real(z))+4 ; Different escape boundry
}
Tangentia3(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= tan(real(z))+6 ; Different escape boundry
}
Tangentia4(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= tan(real(z))+8 ; Different escape boundry
}
Tangentia5(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= tan(real(z))+10 ; Different escape boundry
}
Absia1(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= 4-abs(real(z)) ; Different escape boundry
}
Absia2(ORIGIN) {; Tom Schumm
; Attempt to change the shape of the escape boundry
z = Pixel, z = Sqr(z): ; Just like julia
z = z + p1
z = Sqr(z)
imag(z) <= 4+abs(real(z)) ; Different escape boundry
}