A. Reaction Time of Unlearned Responses a. Results: Person A: Trial 1 23 cm Trial 2 49 Trial 3 43 cm 38.3 (average) cm Person B: Trial 1 55 Trial 2 27 55 cm cm Trial 3 83 cm (average) b. Based on acceleration due to gravity (9.8 m/sec2), calculate the speed of the subject's reflexes by time (sec) = sq. root of (2 x distance (cm)/9.8). Convert the average distance to time: Student B- sec. sec. Student A-

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A. Reaction Time of Unlearned Responses
a. Results:
Person A:
Trial 1 23
cm
Trial 2
49
Trial 3
43
cm
38.3
(average)
cm
Person B:
Trial 1 55
Trial 2 27
Trial 3
55
cm
cm
83
cm
(average)
b. Based on acceleration due to gravity (9.8 m/sec2), calculate the speed of the subject's reflexes by
time (sec) = sq. root of (2 x distance (cm)/9.8).
Convert the average distance to time:
Student B
sec.
sec.
Student A-
Compare the results among classmates.
sec.
There are at least 10 synapses involved in this response. Based on your results, what is ti
roguires to reçeive and send a signal?
Class range (maximum, minimum)
second
Transcribed Image Text:A. Reaction Time of Unlearned Responses a. Results: Person A: Trial 1 23 cm Trial 2 49 Trial 3 43 cm 38.3 (average) cm Person B: Trial 1 55 Trial 2 27 Trial 3 55 cm cm 83 cm (average) b. Based on acceleration due to gravity (9.8 m/sec2), calculate the speed of the subject's reflexes by time (sec) = sq. root of (2 x distance (cm)/9.8). Convert the average distance to time: Student B sec. sec. Student A- Compare the results among classmates. sec. There are at least 10 synapses involved in this response. Based on your results, what is ti roguires to reçeive and send a signal? Class range (maximum, minimum) second
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