SOLUTION: Find C in the following triangle, if it exist. (Enter your answer rounded to the nearest 10 minutes.) B=62°10', a=4620cm, b=3260cm (Use "dms" notation (degrees, minutes, sec

Algebra.Com
Question 983844: Find C in the following triangle, if it exist.
(Enter your answer rounded to the nearest 10 minutes.)
B=62°10', a=4620cm, b=3260cm
(Use "dms" notation (degrees, minutes, seconds); enter 0 for the number of seconds. Enter the null set if the triangle does not exist.)
Thank you.

Answer by Alan3354(69443)   (Show Source): You can put this solution on YOUR website!
Find C in the following triangle, if it exist.
(Enter your answer rounded to the nearest 10 minutes.)
B=62°10', a=4620cm, b=3260cm
===================
Use the Law of Sines to find angle A first.
b/sin(B) = a/sin(A)
---
Then C = 180 - (A+B)
===========================
email via the TY note to check your work.

RELATED QUESTIONS

Find C in the following triangle, if it exist. a= 31m, b=42m, c=60m (Enter your... (answered by Alan3354,MathLover1)
Find B in the following triangle, if it exist. a= 31m, b=42m, c=60m (Enter your answer... (answered by Alan3354)
Find the angle (rounded to the nearest 10 minutes) between the following pair of vectors: (answered by solver91311)
Find the angle (rounded to the nearest 10 minutes) between the following pair of vectors: (answered by Alan3354)
Find the length of a if angle A= 62 degrees, b = 15, and c = 21. Enter the numerical... (answered by Alan3354)
Solve ΔABC. Enter your numeric answer rounded to the nearest degree. m∠A =... (answered by Alan3354)
Find all solutions to the following triangle. (Round your answers to the nearest whole... (answered by MathLover1)
This problem refers to triangle ABC. If a = 100 inches, b = 62 inches, and C = 60°,... (answered by MathLover1)
Assume ABC is a right triangle with right angle at C. If A= 36º30' and b= 43.5cm, find... (answered by Alan3354)