The ammonia molecule NH3 has a permanent electric
dipole moment equal to 1.47 D, where 1 D = 1 debye unit = 3.34 ×
10-30 C-m. Calculate the electric potential in volts due
to an ammonia molecule at a point 49.6 nm away along the axis of
the dipole. (Set V = 0 at infinity.)
IF5
Polar Bonds
Yes
No
Dipole Moment
Yes
No
TeBr4
Polar Bonds
Yes
No
Dipole Moment
Yes
No
NH2−
Polar Bonds
Yes
No
Dipole Moment
Yes
No
PBr3
Polar Bonds
Yes
No
Dipole Moment
Yes
No
IO2−
Polar Bonds
Yes
No
Dipole Moment
Yes
No
Identify whether each of the following compounds exhibits a molecular dipole moment. If so, indicate the direction of the net molecular dipole moment:(a) CH3CH2OCH2CH3 (b) CO2
What is the formula to calculate the dipole moment of a magnet?
This is the information I have, we used a wire that weighs 20.33 g
with .1v and .94 amps running through it? The length of the magnet
is 20mm, there was a 1cm deflection west, there was .45 cm between
magnet and wire, and we were 5 degrees from earths magnetic field?
Am I missing any information? Can you give me a general equation to
find the dipole...
Please explain clearly. Thank you.
Part 1.
a. The dipole moment of a molecule is 6.17E-30 [C·m]. The dipole
has a separation of distance of d [m]. It is given that the dipole
moment has a magnitude of p = 2qd. In an electric field of
(6.0*10^6) [N/C], find the maximum torque on the molecule. We
assume an answer in 10-23 N.m
b. There is a uniformly charged spherical shell, whose inner and
outer radii are R1 and R2, and...