beryllium |
asbecasite |
As nouns the difference between beryllium and asbecasite
is that
beryllium is beryllium while
asbecasite is (mineral) a trigonal-ditrigonal pyramidal mineral containing aluminum, arsenic, beryllium, calcium, oxygen, silicon, tin, and titanium.
beryllium |
beryllite |
As nouns the difference between beryllium and beryllite
is that
beryllium is beryllium while
beryllite is (mineral) an orthorhombic white mineral containing beryllium, hydrogen, oxygen, and silicon.
beryllium |
bergslagite |
As nouns the difference between beryllium and bergslagite
is that
beryllium is beryllium while
bergslagite is (mineral) a monoclinic-prismatic mineral containing arsenic, beryllium, calcium, hydrogen, and oxygen.
beryllium |
faheyite |
As nouns the difference between beryllium and faheyite
is that
beryllium is beryllium while
faheyite is (mineral) a hexagonal-trapezohedral mineral containing beryllium, hydrogen, iron, magnesium, manganese, oxygen, and phosphorus.
beryllium |
danalite |
As nouns the difference between beryllium and danalite
is that
beryllium is the chemical element with an atomic number of 4; a light metal with specialist industrial applications while
danalite is an isometric-hextetrahedral mineral containing beryllium, iron, oxygen, silicon, and sulfur.
beryllium |
liberite |
As nouns the difference between beryllium and liberite
is that
beryllium is beryllium while
liberite is (mineralogy) a monoclinic-domatic mineral containing beryllium, lithium, oxygen, and silicon.
beryllium |
stoppaniite |
As nouns the difference between beryllium and stoppaniite
is that
beryllium is beryllium while
stoppaniite is (mineralogy) a hexagonal-dihexagonal dipyramidal light blue mineral containing aluminum, beryllium, hydrogen, iron, magnesium, oxygen, silicon, and sodium.
beryllium |
bityite |
As nouns the difference between beryllium and bityite
is that
beryllium is beryllium while
bityite is (mineral) a monoclinic-prismatic mineral containing aluminum, beryllium, calcium, hydrogen, lithium, oxygen, and silicon.
beryllium |
epididymite |
As nouns the difference between beryllium and epididymite
is that
beryllium is the chemical element with an atomic number of 4; a light metal with specialist industrial applications while
epididymite is an orthorhombic-dipyramidal mineral containing beryllium, hydrogen, oxygen, silicon, and sodium.
beryllium |
eudidymite |
As nouns the difference between beryllium and eudidymite
is that
beryllium is beryllium while
eudidymite is (mineral) a monoclinic-prismatic mineral containing beryllium, hydrogen, oxygen, silicon, and sodium.
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