Spiderweb conductivity. Some types of spiders build webs that consist of threads made of dry silk coated with a solution of a variety of compounds. This coating leaves the threads, which are used to capture prey hygroscopic —that is. they attract water from the atmosphere. It has been hypothesized that this aqueous coating makes the threads good electrical conductors. To test the electrical properties of coated thread, researchers placed a 5 mm length of thread between two electrical contacts. The researchers stretched the thread in 1 mm increments to more than twice its original length, and then allowed it to return to its original length, again in 1 mm increments. Some of the resistance measurements are given in the table: Resistance of thread (10 9 Ω) 9 19 41 63 102 76 50 24 Length of thread (mm) 5 7 9 11 13 9 7 5 84. What is the best explanation for the behavior exhibited in the data? A. Longer threads can carry more current than shorter threads and so make better electrical conductors. B. The thread stops being a conductor when it is stretched to 13 mm due to breaks that occur in the thin coating. C. As the thread is stretched, the coating thins and its resistance increases; as the thread is relaxed, the coating returns nearly to its original state. D. The resistance of the thread increases with distance from the end of the thread.
Spiderweb conductivity. Some types of spiders build webs that consist of threads made of dry silk coated with a solution of a variety of compounds. This coating leaves the threads, which are used to capture prey hygroscopic —that is. they attract water from the atmosphere. It has been hypothesized that this aqueous coating makes the threads good electrical conductors. To test the electrical properties of coated thread, researchers placed a 5 mm length of thread between two electrical contacts. The researchers stretched the thread in 1 mm increments to more than twice its original length, and then allowed it to return to its original length, again in 1 mm increments. Some of the resistance measurements are given in the table: Resistance of thread (10 9 Ω) 9 19 41 63 102 76 50 24 Length of thread (mm) 5 7 9 11 13 9 7 5 84. What is the best explanation for the behavior exhibited in the data? A. Longer threads can carry more current than shorter threads and so make better electrical conductors. B. The thread stops being a conductor when it is stretched to 13 mm due to breaks that occur in the thin coating. C. As the thread is stretched, the coating thins and its resistance increases; as the thread is relaxed, the coating returns nearly to its original state. D. The resistance of the thread increases with distance from the end of the thread.
Spiderweb conductivity. Some types of spiders build webs that consist of threads made of dry silk coated with a solution of a variety of compounds. This coating leaves the threads, which are used to capture prey hygroscopic—that is. they attract water from the atmosphere. It has been hypothesized that this aqueous coating makes the threads good electrical conductors. To test the electrical properties of coated thread, researchers placed a 5 mm length of thread between two electrical contacts. The researchers stretched the thread in 1 mm increments to more than twice its original length, and then allowed it to return to its original length, again in 1 mm increments. Some of the resistance measurements are given in the table:
Resistance of thread (109 Ω)
9
19
41
63
102
76
50
24
Length of thread (mm)
5
7
9
11
13
9
7
5
84. What is the best explanation for the behavior exhibited in the data?
A. Longer threads can carry more current than shorter threads and so make better electrical conductors.
B. The thread stops being a conductor when it is stretched to 13 mm due to breaks that occur in the thin coating.
C. As the thread is stretched, the coating thins and its resistance increases; as the thread is relaxed, the coating returns nearly to its original state.
D. The resistance of the thread increases with distance from the end of the thread.
Find the current in the R₁ resistor in the drawing
(V₁=16.0V, V2=23.0 V, V₂ = 16.0V, R₁ = 2005, R₂ =
and R₂ = 2.705)
2.3052
VIT
A
www
R
www
R₂
R₂
Va
Which of the following laws is true regarding
tensile strength?
• tensile strength
T
①Fbreak
=
Wtfest Piece thickness rate (mm)
②T =
test piece width rabe (mm)
Fbreak
break
wat
The position of a squirrel running in a park is given by
= [(0.280 m/s)t + (0.0360 m/s²)t²] + (0.0190 m/s³)ť³ĵj.
What is v₂(t), the x-component of the velocity of the squirrel, as a function of time?
Chapter 19 Solutions
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