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My solution for FiveThirtyEight's Riddler Classic 2019-05-10 (https://fivethirtyeight.com/features/can-the-riddler-bros-beat-joe-dimaggios-hitting-streak/)
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#!/usr/bin/env python3 | |
from functools import reduce | |
from itertools import repeat | |
import numpy as np | |
# https://fivethirtyeight.com/features/can-the-riddler-bros-beat-joe-dimaggios-hitting-streak/ | |
AT_BATS_PER_GAME = 4 | |
STREAK_TO_BEAT = 56 | |
PLAYERS = [(20*160, 0.200), # n_games, batting_average | |
(20*160, 0.250), | |
(20*160, 0.300), | |
(20*160, 0.350), | |
(20*160, 0.400), | |
(10*160, 0.500)] | |
def transition_matrix(batting_avg): | |
prob_hit = 1 - (1 - batting_avg) ** AT_BATS_PER_GAME | |
matrix = [] | |
for row in range(STREAK_TO_BEAT + 2): | |
current_row = [] | |
for col in range(STREAK_TO_BEAT + 2): | |
if row < STREAK_TO_BEAT + 1 and col == 0: | |
# Streak ends | |
current_row.append(1 - prob_hit) | |
elif col == row + 1: | |
# Streak continues | |
current_row.append(prob_hit) | |
elif row == col == STREAK_TO_BEAT + 1: | |
# Streak has surpassed Joe's | |
current_row.append(1) | |
else: | |
current_row.append(0) | |
matrix.append(current_row) | |
return np.array(matrix) | |
print(f"# games\tBA\tPr(beat Joe) (%)") | |
for n_games, batting_average in PLAYERS: | |
t_game = transition_matrix(batting_average) | |
t_career = reduce(np.dot, repeat(t_game, n_games)) | |
prob_beat_joe = 100 * t_career[0, -1] | |
print(f"{n_games}\t{batting_average:.3f}\t{prob_beat_joe}") | |
# # games BA Pr(beat Joe) (%) | |
# 3200 0.200 1.1624744863325596e-08 | |
# 3200 0.250 3.8151937626242545e-05 | |
# 3200 0.300 0.0120615676257413 | |
# 3200 0.350 0.7596601275913853 | |
# 3200 0.400 13.931512790495667 | |
# 1600 0.500 93.38341706773635 |
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