Fill in the blanks: A new type of force was discovered by physicists with the following expression: Enew + Be* + 3x4 where alpha & beta are constants, and x is the position. The expression above was obtained from the interaction of a massless Higgs Boson (a type of particle) and a black hole. Quantum physicists then decides to design and build a machine that is able to move the Higgs Boson from X2 to x1. How much work should the machine do to achieve this feat? (For simplicity, consider that no energy is lost in the process) Solution To determine the work done we apply the following W = dx Evaluating the above, we get W = for the limits from x to xf substituting x1 and x2 as the limits, the work done is expressed as W = ( x12 - x22 )

Inquiry into Physics
8th Edition
ISBN:9781337515863
Author:Ostdiek
Publisher:Ostdiek
Chapter12: Relativity, Particle Physics, And Cosmology
Section: Chapter Questions
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Fill in the blanks:
A new type of force was discovered by physicists with
the following expression:
a
Fnew = + Be* +3x4
where alpha & beta are constants, and x is the
position. The expression above was obtained from
the interaction of a massless Higgs Boson (a type of
particle) and a black hole.
Quantum physicists then decides to design and build
a machine that is able to move the Higgs Boson from
X2 to x1. How much work should the machine do to
achieve this feat? (For simplicity, consider that no
energy is lost in the process)
Solution
To determine the work done we apply the following
W =
dx
Evaluating the above, we get
W =
e
for the limits from xị to xf
substituting x1 and x2 as the limits, the work done is
expressed as
W =
x1
+
x12 - x22 )
Transcribed Image Text:Fill in the blanks: A new type of force was discovered by physicists with the following expression: a Fnew = + Be* +3x4 where alpha & beta are constants, and x is the position. The expression above was obtained from the interaction of a massless Higgs Boson (a type of particle) and a black hole. Quantum physicists then decides to design and build a machine that is able to move the Higgs Boson from X2 to x1. How much work should the machine do to achieve this feat? (For simplicity, consider that no energy is lost in the process) Solution To determine the work done we apply the following W = dx Evaluating the above, we get W = e for the limits from xị to xf substituting x1 and x2 as the limits, the work done is expressed as W = x1 + x12 - x22 )
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