The least common multiples for the given sets of numbers are found. Then, these least common multiples are matched with their corresponding numbers in another column. The correct matchings are:
i. 504 -> b. 9, 8, 7
ii. 288 -> f. 32, 24, 18
iii. 84 -> e. 14, 12
iv. 44 -> a. 22 and 4
v. 200 -> d. 25, 8
vi. 108 -> c. 27, 12, 36
This question is asking for the least common multiple (LCM) of different sets of numbers. The LCM is the smallest number that is a multiple of each of the numbers in a set. We will find the LCM for each set in Column II and match it to the corresponding number in Column I.
a. For 22 and 4, the LCM is 44.
b. For 9, 8, and 7, the LCM is 504.
c. For 27, 12, and 36, the LCM is 108.
d. For 25 and 8, the LCM is 200.
e. For 14 and 12, the LCM is 84.
f. For 32, 24, and 18, the LCM is 288.
So, the correct matchings are:
i. 504 -> b. 9, 8, 7
ii. 288 -> f. 32, 24, 18
iii. 84 -> e. 14, 12
iv. 44 -> a. 22 and 4
v. 200 -> d. 25, 8
vi. 108 -> c. 27, 12, 36
#SPJ2
The complete question is given below:
Match each set of numbers with their least common multiple.
In column I, the numbers are:
i. 504
ii. 288
iii. 84
iv. 44
v. 200
vi. 108
In column II, the numbers are:
a. 22 and 4=
b. 9, 8, 7=
c. 27, 12,,36=
d. 25 , 8=
e. 14 ,12=
f. 32, 24 18=
27, 12, and 36 = 108
22 and 4 = 44
14 and 12 = 84
25 and 8 =200
9, 8, and 7 = 504
32, 24, and 18 = 288
a.
$1,825
b.
$1,294
c.
$1,929
d.
$1,643
i just did it and its D
1643 is the annual premium for the cheapest policy Jeremy can buy.
The amount of money a business or an individual pays for a policy annually is called the annual premium.
Face value is the amount of benefits in the form of money or other beneficiaries a policy holder receives at maturity.
Age of Jeremy = 29
Face value of the policy = $90,000
Estimated annual premium = (Face value ÷ 1000) × rate
Annual premium payable for a man whole life = (90,000 ÷ 1000) × 18.25
= 90 × 18.25
= 1642.5 ≅ 1643
Hence, Annual premium for the cheapest policy having a 90,000 face value that Jeremy can buy is $1643.
To learn more on Face value, click:
#SPJ3
Answer:
Step-by-step explanation:
D