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Answer :
To find the weight of a 114 kg llama on Earth, we can use the formula for weight:
[tex]\[ \text{Weight} = \text{mass} \times \text{gravitational acceleration} \][/tex]
1. Identify the mass of the llama: The mass given is 114 kg.
2. Determine the gravitational acceleration on Earth: This is typically 9.81 meters per second squared (m/s²).
3. Calculate the weight: Multiply the mass (114 kg) by the gravitational acceleration (9.81 m/s²).
[tex]\[ \text{Weight} = 114 \, \text{kg} \times 9.81 \, \text{m/s}^2 \][/tex]
4. Result: The weight of the llama on Earth is 1118.34 Newtons.
That's how you determine the weight in Newtons of a llama given its mass and the gravitational acceleration on Earth.
[tex]\[ \text{Weight} = \text{mass} \times \text{gravitational acceleration} \][/tex]
1. Identify the mass of the llama: The mass given is 114 kg.
2. Determine the gravitational acceleration on Earth: This is typically 9.81 meters per second squared (m/s²).
3. Calculate the weight: Multiply the mass (114 kg) by the gravitational acceleration (9.81 m/s²).
[tex]\[ \text{Weight} = 114 \, \text{kg} \times 9.81 \, \text{m/s}^2 \][/tex]
4. Result: The weight of the llama on Earth is 1118.34 Newtons.
That's how you determine the weight in Newtons of a llama given its mass and the gravitational acceleration on Earth.
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