_Measurements of the Magnetic Elements at Sea._--Owing to the fact that
the proportion of the earth's surface covered by sea is so much greater
than the dry land, the determination of the magnetic elements on board
ship is a matter of very considerable importance. The movements of a
ship entirely preclude the employment of any instrument in which a
magnet suspended by a fibre has any part, so that the unifilar is
unsuited for such observations. In order to obtain the declination a
pivoted magnet is used to obtain the magnetic meridian, the geographical
meridian being obtained by observations on the sun or stars. A carefully
made ship's compass is usually employed, though in some cases the
compass card, with its attached magnets, is made reversible, so that the
inclination to the zero of the card of the magnetic axis of the system
of magnets attached to the card can be eliminated by reversal. In the
absence of such a reversible card the index correction must be
determined by comparison with a unifilar magnetometer, simultaneous
observations being made on shore, and these observations repeated as
often as occasion permits. To determine the dip a Fox's dip circle[1] is
used. This consists of an ordinary dip circle (see INCLINOMETER) in
which the ends of the axle of the needle are pointed and rest in
jewelled holes, so that the movements of the ship do not displace the
needle. The instrument is, of course, supported on a gimballed table,
while the ship during the observations is kept on a fixed course. To
obtain the _strength_ of the field the method usually adopted is that
known as Lloyd's method.[2] To carry out a determination of the total
force by this method the Fox dip circle has been slightly modified by E.
W. Creak, and has been found to give satisfactory results on board ship.
The circle is provided with two needles in addition to those used for
determining the dip, one (a) an ordinary dip needle, and the other (b) a
needle which has been loaded at one end by means of a small peg which
fits into one of two symmetrically placed holes in the needle. The
magnetism of these two needles is never reversed, and they are as much
as possible protected from shock and from approach to other magnets, so
that their magnetic state may remain as constant as possible. Attached
to the cross-arm which carries the microscopes used to observe the ends
of the dipping needle is a clamp, which will hold the needle _b_ in such
a way that its plane is parallel to the vertical circle and its axis is
at right angles to the line joining the two microscopes. Hence, when the
microscopes are adjusted so as to coincide with the points of the
dipping needle _a_, the axes of the two needles must be at right angles.
The needle _a_ being suspended between the jewels, and the needle _b_
being held in the clamp, the cross-arm carrying the reading microscopes
and the needle _b_ is rotated till the ends of the needle a coincide
with the cross-wires of the microscopes.
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