QUESTION IMAGE
Question
rank the objects according to acceleration; use 1 for the most negative and 6 for the most positive.
directions: tap each diagram in order to toggle though the possible acceleration rankings. once each object has a unique ranking, a check answer button will appear.
2 n ← 0.25 kg → 6 n; 4 n ← 0.50 kg → 6 n; 6 n ← 4.0 kg ← 2 n; 4.0 kg → 6 n → 4 n; 8 n ← 2.0 kg → 2 n; 6 n ← 0.25 kg → 2 n
Step1: Recall Newton's Second Law
Newton's second law states \( F_{net} = ma \), so \( a=\frac{F_{net}}{m} \). We calculate the net force (summing forces, left as negative, right as positive) and then divide by mass for each object.
Step2: Calculate for First Object (0.25 kg, 2N left, 6N right)
Net force \( F_{net1}=6 - 2 = 4\space N \) (right). Acceleration \( a_1=\frac{4}{0.25}=16\space m/s^2 \).
Step3: Calculate for Second Object (0.50 kg, 4N left, 6N right)
Net force \( F_{net2}=6 - 4 = 2\space N \) (right). Acceleration \( a_2=\frac{2}{0.50}=4\space m/s^2 \).
Step4: Calculate for Third Object (4.0 kg, 6N left, 2N left)
Net force \( F_{net3}=-6 - 2 = -8\space N \) (left). Acceleration \( a_3=\frac{-8}{4.0}=-2\space m/s^2 \).
Step5: Calculate for Fourth Object (4.0 kg, 6N right, 4N right)
Net force \( F_{net4}=6 + 4 = 10\space N \) (right). Acceleration \( a_4=\frac{10}{4.0}=2.5\space m/s^2 \). Wait, no—wait, the diagram: 4.0 kg, two right forces? Wait, original diagram: "4.0 kg —→6N" and "—→4N"? So net force is \( 6 + 4 = 10\space N \) right. So \( a_4=\frac{10}{4}=2.5\space m/s^2 \). Wait, maybe I misread. Wait, third object: "6N ←— 4.0 kg" and "2N ←", so two left forces: 6+2=8N left, so \( F_{net}=-8\space N \), \( a_3=\frac{-8}{4}=-2\space m/s^2 \).
Step6: Calculate for Fifth Object (2.0 kg, 8N left, 2N right)
Net force \( F_{net5}=2 - 8 = -6\space N \) (left). Acceleration \( a_5=\frac{-6}{2.0}=-3\space m/s^2 \).
Step7: Calculate for Sixth Object (0.25 kg, 6N left, 2N right)
Net force \( F_{net6}=2 - 6 = -4\space N \) (left). Acceleration \( a_6=\frac{-4}{0.25}=-16\space m/s^2 \).
Now, list accelerations:
- \( a_6=-16\space m/s^2 \) (most negative, rank 1)
- \( a_5=-3\space m/s^2 \) (rank 2)
- \( a_3=-2\space m/s^2 \) (rank 3)
- \( a_4=2.5\space m/s^2 \) (rank 4)
- \( a_2=4\space m/s^2 \) (rank 5)
- \( a_1=16\space m/s^2 \) (most positive, rank 6)
Wait, wait, fourth object: maybe I messed up. Wait, fourth diagram: "4.0 kg —→6N" and "—→4N"—so both right, so net force 10N right, \( a=10/4=2.5 \). Third: two left, 8N left, \( a=-2 \). Fifth: 8N left, 2N right: net -6N, \( a=-3 \). Sixth: 6N left, 2N right: net -4N, \( a=-4/0.25=-16 \). First: 4N right, \( a=16 \). Second: 2N right, \( a=4 \).
So accelerations (from most negative to most positive):
- Sixth object (\( a=-16 \))
- Fifth object (\( a=-3 \))
- Third object (\( a=-2 \))
- Fourth object (\( a=2.5 \))
- Second object (\( a=4 \))
- First object (\( a=16 \))
Wait, but let's recheck fifth object: mass 2.0 kg, 8N left, 2N right. Net force: 2 - 8 = -6 N. Acceleration: -6 / 2 = -3 m/s². Correct. Sixth: 0.25 kg, 6N left, 2N right: net 2 - 6 = -4 N. Acceleration: -4 / 0.25 = -16 m/s². Correct. Third: 4.0 kg, 6N left, 2N left: net -8 N. Acceleration: -8 / 4 = -2 m/s². Correct. Fourth: 4.0 kg, 6N right, 4N right: net 10 N. Acceleration: 10 / 4 = 2.5 m/s². Correct. Second: 0.50 kg, 4N left, 6N right: net 2 N. Acceleration: 2 / 0.5 = 4 m/s². Correct. First: 0.25 kg, 2N left, 6N right: net 4 N. Acceleration: 4 / 0.25 = 16 m/s². Correct.
So ranking (1 most negative, 6 most positive):
- Sixth object: 1
- Fifth object: 2
- Third object: 3
- Fourth object: 4
- Second object: 5
- First object: 6
But the problem says "tap each diagram to toggle rankings"—but since we need to rank them, the order from most negative (1) to most positive (6) is:
- 0.25 kg, 6N left, 2N right (sixth diagram)
- 2.0 kg, 8N left, 2N right (fifth diagram)
- 4.0 kg, 6N left, 2N left (third diagram)
- 4.0 kg, 6N right, 4N right (fourth diagram)
- 0.50 kg, 4N left, 6N righ…
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- 0.25 kg (6N left, 2N right)
- 2.0 kg (8N left, 2N right)
- 4.0 kg (6N left, 2N left)
- 4.0 kg (6N right, 4N right)
- 0.50 kg (4N left, 6N right)
- 0.25 kg (2N left, 6N right)
(Note: The answer is the ranking order of the diagrams as per the calculated accelerations, with 1 being most negative and 6 most positive.)