Created
August 19, 2016 17:11
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Lowest unique common integer code
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generate_fks <- function(N) { | |
fki <- log(N + 1) | |
fks <- c(fki) | |
for (i in seq(N)) { | |
fki <- log(exp(fki) - fki) | |
fks <- c(fks, fki) | |
} | |
fks | |
} | |
normalise_vec <- function(v) { | |
v / sum(v) | |
} | |
#' Probability that there is no one on k | |
mu <- function(k, P, N) { | |
(1 - P[k]) ^ (N - 1) | |
} | |
#' Probability that there is no one unique BELOW j given that no one is on k | |
nu <- function(j, k, P, N) { | |
if (j == 1) { | |
return(1) | |
} | |
lhs <- nu(j-1, k, P, N) | |
rhs <- 1 - ((N-1) * (P[j-1] / sum(P[-k])) * sum(P[-c(j-1, k)])^(N-2)) | |
lhs * rhs | |
} | |
#' EXPECTATION of picking i if a population of N-1 play according to P | |
E <- function(i, P, N) { | |
mu(i, P, N) * nu(i, i, P, N) | |
} | |
N <- 100 | |
P <- generate_fks(N) %>% normalise_vec | |
sapply(seq(N), E, P=P, N=N) %>% plot | |
sapply(seq(N), function(x) nu(x, x, P, N)) %>% plot | |
nu(50, 50, P, N) | |
j <- 50 | |
k <- 50 |
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