A spiral is an ice-skating position in which the skater glides on one foot with the other foot held above hip level. It’s a required element in women’s singles figure skating competition and is related to the arabesque performed in ballet. Figure 5.40 shows skater Sarah Hughes executing a spiral during her gold-medal performance at the Winter Olympics in Salt Lake City. FIGURE 5.40 Problem 77-80 The till angle θ that the skater’s body makes with the vertical is given approximately by θ = tan −1 (0.5). From this you can conclude that the skater’s centripetal acceleration has approximate magnitude a. 0. b. 0.5 m/s 2 . c. 5 m/s 2 . d. can’t be determined without knowing the skater’s speed
A spiral is an ice-skating position in which the skater glides on one foot with the other foot held above hip level. It’s a required element in women’s singles figure skating competition and is related to the arabesque performed in ballet. Figure 5.40 shows skater Sarah Hughes executing a spiral during her gold-medal performance at the Winter Olympics in Salt Lake City. FIGURE 5.40 Problem 77-80 The till angle θ that the skater’s body makes with the vertical is given approximately by θ = tan −1 (0.5). From this you can conclude that the skater’s centripetal acceleration has approximate magnitude a. 0. b. 0.5 m/s 2 . c. 5 m/s 2 . d. can’t be determined without knowing the skater’s speed
A spiral is an ice-skating position in which the skater glides on one foot with the other foot held above hip level. It’s a required element in women’s singles figure skating competition and is related to the arabesque performed in ballet. Figure 5.40 shows skater Sarah Hughes executing a spiral during her gold-medal performance at the Winter Olympics in Salt Lake City.
FIGURE 5.40 Problem 77-80
The till angle θ that the skater’s body makes with the vertical is given approximately by θ = tan−1(0.5). From this you can conclude that the skater’s centripetal acceleration has approximate magnitude
a. 0.
b. 0.5 m/s2.
c. 5 m/s2.
d. can’t be determined without knowing the skater’s speed
Four point-like charges are placed as shown in the figure, three of them are at the corners
and one at the center of a square, 36.0 cm on each side. What is the electric potential at
the empty corner? Let q1=q3=+26.0 µС, q2=-28.0 μC, and q4=-48.0μc
V
PLS HELp
Please solve and answer the question correctly please. Thank you!!
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