Assume that the energy of repulsion is given Ke? by Erep В and that the energy of attraction is given by Emae ,where B and K %3D a8 a are constants and e is the electron charge. Compute the elastic modulus of the system for ao = 0.14 nm. The elastic modulus can be left in terms of B, K, e, and nanometers. - Repulsion Interionic distance a af Net energy Attraction Emin r = cation R = anion R ao =r + R do Energy
Assume that the energy of repulsion is given Ke? by Erep В and that the energy of attraction is given by Emae ,where B and K %3D a8 a are constants and e is the electron charge. Compute the elastic modulus of the system for ao = 0.14 nm. The elastic modulus can be left in terms of B, K, e, and nanometers. - Repulsion Interionic distance a af Net energy Attraction Emin r = cation R = anion R ao =r + R do Energy
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Assume that the energy of repulsion is given
Ke?
where B and K
В
by Eep=
and that the energy of attraction is given by E
,8
attrac
a
a
are constants and e is the electron charge. Compute the elastic modulus of the system for
a, = 0.14 nm. The elastic modulus can be left in terms of B, K, e, and nanometers.
%3D
Repulsion
Interionic distance a
Net energy
Attraction
Emin
r = cation
R = anion
ao =r + R
do
Energy](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F85ff80cd-34a8-4471-9907-d9de1b52412a%2F157ff0d0-7a3c-4a24-8e4f-c4c25fc31614%2Fwpz6w6i_processed.png&w=3840&q=75)
Transcribed Image Text:Assume that the energy of repulsion is given
Ke?
where B and K
В
by Eep=
and that the energy of attraction is given by E
,8
attrac
a
a
are constants and e is the electron charge. Compute the elastic modulus of the system for
a, = 0.14 nm. The elastic modulus can be left in terms of B, K, e, and nanometers.
%3D
Repulsion
Interionic distance a
Net energy
Attraction
Emin
r = cation
R = anion
ao =r + R
do
Energy
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