Simple harmonic motion can be described us- ing the equation y = A sin(k z – wt - 6). Consider the simple harmonie motion given by the figure. At position a = 0, we have %24 -4 What equation describes the motion? sin(-0) = - sin 0. 1. y = Asin (-wt + 2. y = Acos (-wt 3. y = A tan (-wt + 4. y = Acos (-w 5. y- Acos (-wl+ 6. y- A lan -wl+ (류 7. y = Atan (-wt- 8. y = Asin (-wt - 9. y = Asin (-wt+)

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Simple harmonic motion can be described us-
ing the equation
y = Asin(kz – wt - 6).
Consider the simple harmonic motion given
by the figure.
At position a= 0, we have
+A
What equation describes the motion?
sin(-0)= - sin 0.
1. y = Asin (-wt +)
2. y = A cos (-wt -
3. y = Atan (-wt +5)
4. y = Acos (-wt+)
3m
5. y- Acos ( -wi+
2
6. y - Alan
7. y = Atan -wt -
8. y = A sin (-wt -
9. y = Asin (-wt +)
|
Transcribed Image Text:Simple harmonic motion can be described us- ing the equation y = Asin(kz – wt - 6). Consider the simple harmonic motion given by the figure. At position a= 0, we have +A What equation describes the motion? sin(-0)= - sin 0. 1. y = Asin (-wt +) 2. y = A cos (-wt - 3. y = Atan (-wt +5) 4. y = Acos (-wt+) 3m 5. y- Acos ( -wi+ 2 6. y - Alan 7. y = Atan -wt - 8. y = A sin (-wt - 9. y = Asin (-wt +) |
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