Step 1: Use the addition rule
$$P(A \cup B) = P(A) + P(B) - P(A \cap B)$$
$$0.45 = 0.3 + 0.2 - P(A \cap B)$$
$$0.45 = 0.5 - P(A \cap B)$$
$$P(A \cap B) = 0.5 - 0.45 = 0.05$$
Step 2: Partition event A
Event $A$ can be partitioned into two mutually exclusive parts:
Therefore: $$P(A) = P(A \cap B) + P(A \cap \bar{B})$$
Step 3: Solve for $P(A \cap \bar{B})$
$$P(A \cap \bar{B}) = P(A) - P(A \cap B)$$
$$= 0.3 - 0.05$$
$$= 0.25$$
Answer: 0.25
A shop selling electronic items sells smartphones of only three reputed companies A, B, and C because chances of their manufacturing a defective smartphone are only 5%, 4%, and 2% respectively. In his inventory, he has 25% smartphones from company A, 35% smartphones from company B, and 40% smartphones from company C.
A person buys a smartphone from this shop
(i) Find the probability that it was defective.
Identify the taxa that constitute a paraphyletic group in the given phylogenetic tree.
The vector, shown in the figure, has promoter and RBS sequences in the 300 bp region between the restriction sites for enzymes X and Y. There are no other sites for X and Y in the vector. The promoter is directed towards the Y site. The insert containing only an ORF provides 3 fragments after digestion with both enzymes X and Y. The ORF is cloned in the correct orientation in the vector using the single restriction enzyme Y. The size of the largest fragment of the recombinant plasmid expressing the ORF upon digestion with enzyme X is ........... bp. (answer in integer) 