Field book of common rocks and minerals : $b for identifying the rocks and minerals of the United States and interpreting their origins and meaningsLoomis, Frederic Brewster
Science
Field book of common rocks and minerals : $b for identifying the rocks and minerals of the United States and interpreting their origins and meanings
Loomis, Frederic Brewster
Minerals -- United States; Rocks -- United States
A set for measuring hardness may be purchased from any dealer in mineral
supplies. For rough determination, as in the field, the following
objects have the hardness indicated; the finger nail 2¼, a penny 3, a
knife blade about 5.5, and glass not over 6. In testing, a mineral is
harder than the one it will scratch, and softer than the one by which it
is scratched. For instance, if a mineral will scratch calcite and is
scratched by fluorite, it is between 3 and 4 in hardness, say 3.5. When
two samples mutually scratch each other they are of equal hardness. Care
must be used in determining hardness, especially with the harder
minerals; for often, when testing a mineral, the softer one will leave a
streak of powder on the harder one, which is not a scratch. One should
always rub the mark to make sure it is really a groove made by
scratching.
Cleavage
Cleavage is the tendency, characteristic of most minerals, and due to
the arrangement of their molecules, to cleave or break along definite
planes. The cleavage of any mineral is not irregular or indefinite, but
characteristic for each mineral, and always parallel to possible or
actual faces on the crystal, and always so described. For instance
galena has three cleavages, all equally good, and parallel to the cube
faces; so it is said to have cubic cleavage. In the same way fluorite
has octahedral cleavage, and calcite rhombic cleavage. In some minerals
cleavage is well developed in one plane, and less developed in other
planes, or it may be lacking altogether. The varying degrees of
perfection by which a mineral cleaves are expressed as, perfect or
imperfect, distinct or indistinct, good or poor, etc.
Specific gravity
The specific gravity of a mineral is its weight compared with the weight
of an equal volume of water, and is therefore the expression of how many
times as heavy as water the mineral is. For instance the specific
gravity of pyrite is 5.1, which is saying it is 5.1 times as heavy as
water. In a pure mineral the specific gravity is constant, and an
important factor in making final determinations. As ordinarily obtained,
a piece of pure mineral is weighed in air, which value may be called x.
It is then immersed in water and again weighed, and this value is called
y. The difference between the weight in air and that in water is the
weight of an equal volume of water. Then we have the following formula:
specific gravity = (x)/(x-y).
Various balances have been devised for making these measurements, but
any balance which will weigh small objects accurately, may be adapted to
specific gravity work, by hanging a small pan under the regular weighing
pan. When using this balance, care is taken to see that the lower pan is
always submerged in water, even while the mineral is being weighed in
air, so that when weighed in water in the lower pan, the weight of this
lower pan has already been considered.
Streak
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account