So: A(2, 2) = A(1, 5) Now, we need to find the value of A(1, 5): A(1, 5) = A(0, A(1, 4)) Now, we need to find the value of A(1, 4): A(1, 4) = A(0, A Video Answer Solved by verified expert
x=5 As 3^(x-1)=81, we have x-1=log_(3)81=log_(3)3^4 = 4log_(3)3=4×1=4 Hence x=4+1=5. In this example, the fact that #81 # is one of the powers of #3,# allows us to solve this equation using indices. (#3^4 =81#)If #x^a = x^b " " rArr a = b"#. If the bases are the same then the indices are equal to each other.
41 // 4 + 1 = 5 (answer is on top-left) 31 // 3 + 1 = 4 (answer is on top-right) 51 // 5 + 1 = 6 (answer is on bottom-right) Maybe the pattern here is that the answer to adding each digit of the topmost number from each image is moving clockwise for each image. ^Not sure if that makes sense But I tried.
Rules for expressions with fractions: Fractions - use a forward slash to divide the numerator by the denominator, i.e., for five-hundredths, enter 5/100.If you use mixed numbers, leave a space between the whole and fraction parts. Mixed numerals (mixed numbers or fractions) keep one space between the integer and fraction and use a forward slash to input fractions i.e., 1 2/3.
If there are two missing fractions, then generally you will need to be given a second equation in order to have enough information to find the two missing fractions. What is 2/5 + blank equals 7/10. If we had a simpler problem such as 3 + blank = 8, we would do 8-3 = 5.
Find the inverse of the function defined by f(x) = 3 2x − 5. Solution. Before beginning this process, you should verify that the function is one-to-one. In this case, we have a linear function where m ≠0 and thus it is one-to-one. Step 1: Replace the function notation f(x) with y. f(x) = 3 2x − 5 y = 3 2x − 5.
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3 4 1 5 answer