The Schrödinger equation is a linear partial differential equation that describes the wave function or state function of a quantum-mechanical system. It is a key result in quantum mechanics, and its discovery was a significant landmark in the development of the subject.
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Tuesday, March 30, 2021
Coulomb Vector Force for Two Charges
Force Vector Acting to the Second Charge from the First Charge
F= keq1q2/r2
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter:
q1=C
x1=m
y1=m
z1=m
q2=C
x2=m
y2=m
z2=m
rx=x2-x1=m
ry=y2-y1=m
rz=z2-z1=m
r2=rx2+ry2+rz2=m2
|r|=m
|F|=N or |F|=N
Fx=N or Fx=N
Fy=N or Fy=N
Fz=N or Fz=N
F= keq1q2/r2
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter:
q1=C
x1=m
y1=m
z1=m
q2=C
x2=m
y2=m
z2=m
rx=x2-x1=m
ry=y2-y1=m
rz=z2-z1=m
r2=rx2+ry2+rz2=m2
|r|=m
|F|=N or |F|=N
Fx=N or Fx=N
Fy=N or Fy=N
Fz=N or Fz=N
Coulomb's Law: Charge is Calculated Parameter
F= keq1q2/r2
q2= r2F/(keq1)
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter the First Charge (C) : q1=C
Enter the Distance (m): r=m
Enter the Force magnitude (N): force=N
Charge (C): q2=C
Charge (C): q2=C
q2= r2F/(keq1)
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter the First Charge (C) : q1=C
Enter the Distance (m): r=m
Enter the Force magnitude (N): force=N
Charge (C): q2=C
Charge (C): q2=C
Coulomb's Law: Distance is Calculated Parameter
F= keq1q2/r2
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter the First Charge (C) : q1=C
Enter the Second Charge (C): q2=C
Enter the Force magnitude (N): force=N
Distance (m): R=m
Distance (m): R=m
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter the First Charge (C) : q1=C
Enter the Second Charge (C): q2=C
Enter the Force magnitude (N): force=N
Distance (m): R=m
Distance (m): R=m
Monday, March 29, 2021
Coulomb's Law
F= keq1q2/r2
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter the First Charge (C) : q1=C
Enter the Second Charge (C): q2=C
Enter the distance beetwun charges (m): r=m
Magnitude of Coulomb's Force (N): F=N
Magnitude of Coulomb's Force (N): F=N
ke=8.9875517923⨯109N⋅m2⋅C-2
Enter the First Charge (C) : q1=C
Enter the Second Charge (C): q2=C
Enter the distance beetwun charges (m): r=m
Magnitude of Coulomb's Force (N): F=N
Magnitude of Coulomb's Force (N): F=N
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