![]() The first part of a frogs small intestine (straight part) duodenum. The membrane in a frog that holds the coils of the small intestine together. Can you use any of the other two functions to answer the question of backtracking? Explain your answer. The yellowish structures in a frog that serve as an energy reserve (spaghetti-shaped structures) fat bodies. In (a), you used the function s(t) to conclude that you didn't backtrack during your trip. Students start with the external anatomy and mouth, then explore the organs of the digestive, urinary, and reproductive systems. (c) Use a graphing calculator to graph s(t), v(t), and a(t). Student dissection guide details how to examine the external and internal anatomy of the frog. (b) Find the velocity v(t) and the acceleration a(t). How can you check this? Assuming that your trip takes 5.5 hours, find the distance between Geradedorf and Straightville. ![]() (a) Use a graphing calculator to convince yourself that you didn't backtrack during your trip. Biking from Geradedorf to Straightville, your position at time t (measured in hours) is given by the function s ( t ) = 3 π t 3 ( 1 − cos ( π t ) ) s(t)=3 \pi t 3(1-\cos (\pi t)) s ( t ) = 3 π t 3 ( 1 − cos ( π t )) for 0 ≤ t ≤ 5.5, 0 \leq t \leq 5.5, 0 ≤ t ≤ 5.5, where s(t) is measured in miles. The discussion then progresses on to key physiological conditions in which cell signalling has an instrumental role: cancer, apoptosis and diabetes. Geradedorf 3 ^ 3 and Straightville are connected by a very straight, but rather hilly, road.
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