QUESTION IMAGE
Question
write the formula used to calculate mechanical advantage (ma)
- load force means the force ______
- effort force means the force ______
- it takes 100 n to pull an object up an inclined plane. the gravitational force on the object is 600 n.
what is the load force in this case? ______n
what is the effort force in this case? ______n
calculate the mechanical advantage (ma)
answer ______
- a person has a mass of 80 kg. it takes a force of 150 n to pull that person up using a system of pulleys.
a. calculate the gravitational force on the person. ______n
b. calculate the mechanical advantage (ma) of the pulley system. show all your work.
answer ______
- the mechanical advantage of a lever is 6. how much force needs to be exerted on the lever to lift an object with a gravitational force of 320 n? show all your work.
answer ______
it takes 130 n to push a 52 kg object up an inclined plane. calculate the mechanical advantage of the inclined plane. show all your work.
Step1: State MA core formula
$\text{Mechanical Advantage (MA)} = \frac{\text{Load Force (Load)}}{\text{Effort Force (Effort)}}$
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Questions 10-12
Step1: Define Load Force
Load force = gravitational force on object
Step2: Define Effort Force
Effort force = force applied to move object
Step3: Identify given values (Q12)
Load = 600 N, Effort = 100 N
Step4: Calculate MA for Q12
$\text{MA} = \frac{600}{100} = 6$
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Question 13
Step1: Calculate gravitational force
Gravitational force $F_g = m \times g$, where $g=9.8\ \text{m/s}^2$
$F_g = 80 \times 9.8 = 784\ \text{N}$
Step2: Identify Load and Effort
Load = 784 N, Effort = 150 N
Step3: Calculate MA for pulley system
$\text{MA} = \frac{784}{150} \approx 5.23$
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Question 14
Step1: Rearrange MA formula for Effort
$\text{Effort} = \frac{\text{Load}}{\text{MA}}$
Step2: Substitute given values
Load = 320 N, MA = 6
$\text{Effort} = \frac{320}{6} \approx 53.33\ \text{N}$
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Final Inclined Plane Question
Step1: Calculate gravitational force (Load)
$F_g = 52 \times 9.8 = 509.6\ \text{N}$
Step2: Identify Effort force
Effort = 130 N
Step3: Calculate MA
$\text{MA} = \frac{509.6}{130} \approx 3.92$
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- required to overcome the load (weight of the object)
- applied to move the load
- Load force: 600 N; Effort force: 100 N; MA: 6
13a. 784 N
13b. $\approx 5.23$
- $\approx 53.33\ \text{N}$
Final Inclined Plane Question: $\approx 3.92$