A3P means A is the mother of PA4P means A is the brother of PA9P means...
M9N → M is the husband of N
N5K → N is the daughter of K
Hence, → M is the son-in-law of K
K3J → K is the mother of J
Hence, → K is a lady
Hence, → K is the mother-in-law of M.
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A3P means A is the mother of PA4P means A is the brother of PA9P means...
Given Information:
A3P means A is the mother of P
A4P means A is the brother of P
A9P means A is the husband of P
A5P means A is the daughter of P
To find:
Which of the following means that K is the mother-in-law of M?
Analysis:
We need to find a code that represents K as the mother-in-law of M. In order to do that, we need to decode the given codes and determine the relationship between K and M.
Solution:
1. Decode the codes:
- A3P: A is the mother of P
- A4P: A is the brother of P
- A9P: A is the husband of P
- A5P: A is the daughter of P
2. Identify the relationship between K and M:
- From the given codes, we can see that K is represented by A in the codes.
- We need to find a code where K is the mother-in-law of M.
- Since K is represented by A, we need to find a code where A is the mother-in-law of M.
3. Determine the relationship between A and M:
- A3P: A is the mother of P
- A4P: A is the brother of P
- A9P: A is the husband of P
- A5P: A is the daughter of P
From the given codes, we can see that A is the mother of P in A3P. Therefore, A is the mother-in-law of P. But we need to find the relationship between A and M.
4. Decode the options:
- Option a) M9N3K4J: A is the brother of P, so it cannot represent K as the mother-in-law of M.
- Option b) M9N5K3J: A is the daughter of P, so it cannot represent K as the mother-in-law of M.
- Option c) K5J9M3N: This option does not represent any relationship between K and M.
- Option d) K3J9N4M: A is the husband of P, so it represents K as the mother-in-law of M.
Conclusion:
Option d) K3J9N4M means that K is the mother-in-law of M.