Q. 3 We are given the following data for a city: Population of the city on March 30, 2020 = 183,000 Number of new active cases of TB occurring between January 1 and June 30, 2020 26 Number of active...


Q. 3 We are given the following data for a city:<br>Population of the city on March 30, 2020 = 183,000<br>Number of new active cases of TB occurring between January 1 and<br>June 30, 2020 26<br>Number of active TB cases according to the city register on January 1,<br>2020 = 264<br>Find the<br>() Cumulative incidence of active cases of TB for the 6-month period;<br>(ii) Prevalence of active TB as of June 30, 2020.<br>Q. 4 Investigators enrolled 100 diabetics without eye disease in a follow-up<br>study. The results of the first 3 years were as follows:<br>Year 1:0 cases of eye disease detected out of 92; 8 lost to follow-up<br>Year 2: 2 new cases of eye disease detected out of 80; 2 had died; 10 lost to<br>follow-up<br>Year 3: 3 new cases of eye disease detected out of 63; 2 more had died; 13<br>more lost to follow-up.<br>Find the person-time incidence rate.<br>

Extracted text: Q. 3 We are given the following data for a city: Population of the city on March 30, 2020 = 183,000 Number of new active cases of TB occurring between January 1 and June 30, 2020 26 Number of active TB cases according to the city register on January 1, 2020 = 264 Find the () Cumulative incidence of active cases of TB for the 6-month period; (ii) Prevalence of active TB as of June 30, 2020. Q. 4 Investigators enrolled 100 diabetics without eye disease in a follow-up study. The results of the first 3 years were as follows: Year 1:0 cases of eye disease detected out of 92; 8 lost to follow-up Year 2: 2 new cases of eye disease detected out of 80; 2 had died; 10 lost to follow-up Year 3: 3 new cases of eye disease detected out of 63; 2 more had died; 13 more lost to follow-up. Find the person-time incidence rate.

Jun 08, 2022
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