If the bonding energy, in terms of (r), between two ions is ( number. a) Find the repulsive and attractive forces between the two ions. b) If the bonding energy between the two ions at the equilibrium state is given as ny m),x and y are constant and n is an integer Find the smallest distance between the two ions to achieve the state of equilibrium.
If the bonding energy, in terms of (r), between two ions is ( number. a) Find the repulsive and attractive forces between the two ions. b) If the bonding energy between the two ions at the equilibrium state is given as ny m),x and y are constant and n is an integer Find the smallest distance between the two ions to achieve the state of equilibrium.
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![If the bonding energy, in terms of (r), between two ions is (
number.
a) Find the repulsive and attractive forces between the two ions.
b) If the bonding energy between the two ions at the equilibrium state is given as
ny
r+1), x and y are constant and n is an integer
Find the smallest distance between the two ions to achieve the state of equilibrium.
(x1-n
\ny,
1-n](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb9a8417f-a6d6-4e09-83ed-5b259c4f3d37%2F0ff75389-c766-4cbf-9584-5838be39fa7d%2Fljlhcgl_processed.jpeg&w=3840&q=75)
Transcribed Image Text:If the bonding energy, in terms of (r), between two ions is (
number.
a) Find the repulsive and attractive forces between the two ions.
b) If the bonding energy between the two ions at the equilibrium state is given as
ny
r+1), x and y are constant and n is an integer
Find the smallest distance between the two ions to achieve the state of equilibrium.
(x1-n
\ny,
1-n
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