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The masses of three particles are shown - Scottish Highers Physics - Question 11 - 2022

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The masses of three particles are shown. | Particle | Mass (kg) | |--------------|--------------------| | Electron | 9.11 × 10⁻³¹ | | Proton ... show full transcript

Worked Solution & Example Answer:The masses of three particles are shown - Scottish Highers Physics - Question 11 - 2022

Step 1

Calculate the mass of the Higgs boson

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Answer

The mass of the Higgs boson is given as:

extMassHiggs=2.22imes1025extkg ext{Mass}_{Higgs} = 2.22 imes 10^{-25} ext{ kg}

Step 2

Calculate the mass of the proton

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Answer

The mass of the proton is given as:

extMassproton=1.673imes1027extkg ext{Mass}_{proton} = 1.673 imes 10^{-27} ext{ kg}

Step 3

Determine the ratio of the masses

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Answer

To find how many orders of magnitude greater the mass of the Higgs boson is compared to the mass of the proton, we will calculate the ratio:

ext{Ratio} = rac{ ext{Mass}_{Higgs}}{ ext{Mass}_{proton}} = rac{2.22 imes 10^{-25}}{1.673 imes 10^{-27}}

Calculating this gives:

extRatioext132.85 ext{Ratio} ext{ ≈ } 132.85

Step 4

Convert the ratio to orders of magnitude

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The orders of magnitude can be determined by taking the base 10 logarithm of the ratio:

extOrdersofMagnitude=extlog10(132.85)ext2.12 ext{Orders of Magnitude} = ext{log}_{10}(132.85) ext{ ≈ } 2.12

Thus, the mass of the Higgs boson is approximately 2 orders of magnitude greater than the mass of the proton.

Step 5

Select the correct answer

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Answer

Based on the calculated orders of magnitude, the closest answer from the options provided is:

B) 2

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