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Pea plant reproduction can be simulated with coin tossing. The equally likely outcomes of heads and tails are used to simulate the transfer of equally
Pea plant reproduction can be simulated with coin tossing. The equally likely outcomes of heads and tails are used to simulate the transfer of equally likely genes R and r from two Rr pea plants Use the given sequence of flower colors to approximate the probability that five successive offspring all will have red flowers (red-flowered because R is dominant, but carrying both red and white genes). Two coins, heads representing R and tails r, have been tossed 50 times for the simulation. Using the color interpretation hh = red, ht = th = red, and it = white gives the sequence of flower colors in offspring shown below. The probability is. (Type an integer or a simplified fraction.) red-red-red white red-red red-red-red red-red-red white red red-red-red-red red red-red-red red white red white red-red-red-red-red-white white red white red-red-red-red-red-red-white red-red white red-red white white whiteIf one threedigit number (0 cannot be a left digit) is chosen at random from all those that can be made from the following set of digits, nd the probabilityr that the one chosen is not a multiple of 1D. {0. 1.2: 3: 4. 5. 5: ?} The probability that the one chosen is not a multiple of 1D is
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