Caterpillar Pellets The larvae (caterpillars) of certain species of butterflies and moths construct shelters on a host plant out of folded or rolled leaves secured with silk threads. Many of those types of caterpillars eliminate waste by ejecting fecal pellets (frass) at high speeds so that the pellets are projected far away from the caterpillar and its shelter. Various explanations for this behavior have been proposed, but some studies have shown that it may help keep predatory insects such as wasps from locating the caterpillars by homing in on the odor of caterpillar frass. Video microscopy has been used to study the pellet ejection process In one study, the video images reveal that a group of Brazilian skipper caterpillars that are about 50 mm long eject pellets at angles between 10° and 40° above the horizontal. There is no correlation between the size of the pellet and the angle at which it is ejected, but larger pellets are shot with lower speeds, as shown in Figure 4-35 . The pellets are small and dense enough that at the speeds at which they travel air resistance is negligible. Figure 4-35 Problem 88, 89, 90 and 91 91. •• What is the maximum range of a 5-mg pellet that lands at the same height from which it is ejected? A. 14 cm B. 20 cm C. 40 cm D. 78 cm
Caterpillar Pellets The larvae (caterpillars) of certain species of butterflies and moths construct shelters on a host plant out of folded or rolled leaves secured with silk threads. Many of those types of caterpillars eliminate waste by ejecting fecal pellets (frass) at high speeds so that the pellets are projected far away from the caterpillar and its shelter. Various explanations for this behavior have been proposed, but some studies have shown that it may help keep predatory insects such as wasps from locating the caterpillars by homing in on the odor of caterpillar frass. Video microscopy has been used to study the pellet ejection process In one study, the video images reveal that a group of Brazilian skipper caterpillars that are about 50 mm long eject pellets at angles between 10° and 40° above the horizontal. There is no correlation between the size of the pellet and the angle at which it is ejected, but larger pellets are shot with lower speeds, as shown in Figure 4-35 . The pellets are small and dense enough that at the speeds at which they travel air resistance is negligible. Figure 4-35 Problem 88, 89, 90 and 91 91. •• What is the maximum range of a 5-mg pellet that lands at the same height from which it is ejected? A. 14 cm B. 20 cm C. 40 cm D. 78 cm
The larvae (caterpillars) of certain species of butterflies and moths construct shelters on a host plant out of folded or rolled leaves secured with silk threads. Many of those types of caterpillars eliminate waste by ejecting fecal pellets (frass) at high speeds so that the pellets are projected far away from the caterpillar and its shelter. Various explanations for this behavior have been proposed, but some studies have shown that it may help keep predatory insects such as wasps from locating the caterpillars by homing in on the odor of caterpillar frass.
Video microscopy has been used to study the pellet ejection process In one study, the video images reveal that a group of Brazilian skipper caterpillars that are about 50 mm long eject pellets at angles between 10° and 40° above the horizontal. There is no correlation between the size of the pellet and the angle at which it is ejected, but larger pellets are shot with lower speeds, as shown in Figure 4-35. The pellets are small and dense enough that at the speeds at which they travel air resistance is negligible.
Figure 4-35
Problem 88, 89, 90 and 91
91. •• What is the maximum range of a 5-mg pellet that lands at the same height from which it is ejected?
Discuss the differences between the Biot-Savart law and Coulomb’s law in terms of their applicationsand the physical quantities they describe.
Explain why Ampere’s law can be used to find the magnetic field inside a solenoid but not outside.
3. An Atwood machine consists of two masses, mA
and m B, which are connected by an inelastic cord
of negligible mass that passes over a pulley. If the
pulley has radius RO and
moment of inertia I about its axle, determine the
acceleration of the masses
mA and m B, and compare to the situation where the
moment of inertia of the
pulley is ignored. Ignore friction at the axle O. Use
angular momentum and torque in this solution
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