lx)+1 qx 55 0.004609 53 56 0.00479954 57 0.005022 55 10,000 55 9,9899,954 56 559,942...

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lx)+1 qx 55 0.004609 53 56 0.00479954 57 0.005022 55 10,000 55 9,9899,954 56 559,942 9,906 57 58 0.005282 56 9,917 9,893 9,856 58 571 9,804 59 0.005931 589,816 9,790 9,749 60 61 0.006328 599,761 9,734 9,691 61 62 0.006780 60 9,705 9,676 9,630 62 63 0.007292 61 9,645 9,614 9,565 63 64 0.007875 62 9,579 9,547 9,495 64 63 9,511 9,476 9,420 65 59 0.005584 579,868 60 On the left, you are given an excerpt from the RPH-2014 mortality table for female annuitants. On the right a partial select life table has been created using these mortality rates and the following mortality probabilities during the select period Find l55) and l1571+1 then find the probability [55] dies before age 65 and probability [57] +1 survives to age 65 (55] 7P1571+1 Hint: test your formulas on known values in the table above lx)+1 qx 55 0.004609 53 56 0.00479954 57 0.005022 55 10,000 55 9,9899,954 56 559,942 9,906 57 58 0.005282 56 9,917 9,893 9,856 58 571 9,804 59 0.005931 589,816 9,790 9,749 60 61 0.006328 599,761 9,734 9,691 61 62 0.006780 60 9,705 9,676 9,630 62 63 0.007292 61 9,645 9,614 9,565 63 64 0.007875 62 9,579 9,547 9,495 64 63 9,511 9,476 9,420 65 59 0.005584 579,868 60 On the left, you are given an excerpt from the RPH-2014 mortality table for female annuitants. On the right a partial select life table has been created using these mortality rates and the following mortality probabilities during the select period Find l55) and l1571+1 then find the probability [55] dies before age 65 and probability [57] +1 survives to age 65 (55] 7P1571+1 Hint: test your formulas on known values in the table above

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