SOLUTION
Probability that he is dressed in Velvet =
![\frac{7\text{ + 9}}{2\text{ + 5 + 7 + 9 + 11 + 3 }}\text{ = }(16)/(37)](https://img.qammunity.org/2023/formulas/mathematics/college/g55vnanffrn4hby6p2crf9f57axnprncoi.png)
Probability that he is dressed in Acoustic Guitar =
![\frac{2\text{ + 7 + 11}}{2\text{ + 5 + 7 + 9 + 11 + 3 }}\text{ = }(20)/(37)](https://img.qammunity.org/2023/formulas/mathematics/college/e9k5ocr6yo0ona0pjh6wt5nt6iaznn7u5x.png)
Recall that P ( V n A ) =
![\frac{7}{2\text{ + 5 + }7\text{ + 9 + 11 + 3}}\text{ = }(7)/(37)](https://img.qammunity.org/2023/formulas/mathematics/college/82ovy4270s9amko6qws84ciawtdbxd8u19.png)
Finally, we have to calculate : P ( V or A ) = P ( V ) + P ( A ) - P ( V n A )
( because they are not mutually - exclusive )
![\frac{16}{37\text{ }}\text{ + }(20)/(37)\text{ - }\frac{7}{37\text{ }}\text{ = }(29)/(37)](https://img.qammunity.org/2023/formulas/mathematics/college/izl3x4oyd2d5apll08kbd9kj0wqfafuslw.png)
CONCLUSION: The final answer is:
![(29)/(37)](https://img.qammunity.org/2023/formulas/mathematics/college/m5svryrb23kkpaj8ewajcwpq9hnkapp4by.png)