Thursday, May 23, 2019
Data Commentary Practice
GRP 5 KONG Chao, MAO Mao, ZHOU Tingting Figure 1 indicates the corresponding percentages of students correct answers to erudition tasks at different thermal environment. According to it, we can tell that students the true in answering questions changes when their environment gets hotter. As can be seen, they answered with higher accuracy at 23. 5? C, and kept the percentages of correct answers around 80%.A peak of approximate 85% was reached when the sessions went for 2 hours (120 minutes). Although during the first 1. 5 hours (90 minutes) students responded even more right at 20? C, the accuracy percentage then decreased to about 65% in the following time. As for situations at 27? C, it seemed that students showed a comparatively lower degree of accuracy in the whole sessions, and the correct answers accounted for around 65% and never went beyond 70%.After this, other experiment was conducted with all factors staying the same, besides a change in the tasks dealt from English co mprehension to mathematics. Results are displayed in Figure 2. Its easily to notice that at 23. 5? C students answered too around 80% questions correctly during the 3-hour math session, and performed better 2 hours (120 minutes) later at accuracy of 85%. However the highest accuracy in the first 1. 5 hours (90 minutes) was corresponding to the environment temperature setting at 20?C, and 85% it represented. With time passing, there were more and more wrong answers and the accordingly down-sloping trend of accuracy stop at the end of the session, at approximate 75%, which were still 10% higher than the best correct answer percentage at 27? C students could get. The corresponding ratio of right answers began at 60%, then followed an increase and mounted at 65% 2 hours (120 minutes)later. Then it tended to drop slightly, and finally pelt to 63%.From what have been observed in both Figure 1 and Figure 2, it is quite clearly that thermal environment do have an opinion on students perf ormance. Moreover, what particularly noteworthy is that 23. 5? C proves to be better linked with a better performance on accuracy at the close time. This temperature ensures 80% of responses correct during a 3 hours (120 minutes) session, and even a higher percentage when matched with an appropriate session time setting less than 3 hours (180 minutes). For those sessions unrelenting for less than 2 hours (120 minutes), environment temperature of 20?C can also guarantee the same high percentage of accuracy, with shorter the lasting time, higher the percentage. Also another thing worthwhile noting is that 20? C clearly beats 23. 5? C when sessions are less than 1. 5 hours (90 minutes). In conclusion, higher performance whitethorn be achieved when classroom temperature ranging between 20 to 23. 5? C. Also limitations of the whole experiments exist, such as the weakness of experiment samples in representing the general students, considering they were all NUS students.
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