huhhhh?
I was thinking that this is a partial breakdown of the true coding system here for our color spectrum... Am I close??
0 ≤ d(x, y) ≤ n
. d(x, y) = 0 if and only if x = y= black
d(x, y) = d(y, x)
. d(x, z) ≤ d(x, y) + d(y, z) = peach
d(x, y) = Xn
i=1
d(xi
, yi)=white
d(xi
, yi) =
1 xi 6= yi
0 xi = yi= purple
t x = x1, . . . , xn and y = y1, . . . , yn.= pink
d(C) = min{d(c1, c2) | c1, c2 ∈ C, c1 6= c2} = lavender
x 6= c x ∈ A d(x, c) ≤ v= blue
Xq
j=1
Pr[aj received | ai was sent] = green
Pr[x received | c was sent] = Yn
i=1
Pr[xi received | ci was sent]
Xq
j=1(j6=i)
Pr[aj received | ai was sent] = p
p
i
(1 − p)
n−i = p
i+1(1 − p)
n−i−1
1 − p
p
> pi+1(1 − p)
n−i−1
p
0
(1 − p)
n > p(1 − p)
n−1 > . . . > pn
(1 − p)
0
Am I close???
Any questions??
(whistles even louder )