Home
×

Evaporite
Evaporite

Scoria
Scoria



ADD
Compare
X
Evaporite
X
Scoria

Evaporite lan Scoria

Add ⊕
1 Definition
1.1 definisi
banyu-telat endhepan Mineral asil saka konsentrasi lan crystallization dening penguapan saka solusi banyu
scoria punika igneous rock extrusive peteng-colored karo babak rongga gelembung-kaya KALUBÈRAN
1.2 Sajarah
1.2.1 asal
usa
dingerteni
1.2.2 panemu
usiglio
Dingertèni
1.3 Etimologi
saka endhepan kiwa sawise penguapan
saka pungkasan tengah english (denoting slag saka logam molten), saka skōria greek nolak, saka dung Skor
1.4 kelas
rocks sedimentary
batuan beku
1.4.1 sub-kelas
awet rock, rock alus
awet rock, medium atose rock
1.5 kulawarga
1.5.1 group
ora ditrapake
vulkanik
1.6 kategori liyane
rock grained coarse, rock grained nggoleki, medium rock grained, rock opaque
rock grained nggoleki, rock opaque
2 Tekstur
2.1 tektur
earthy
vesicular
2.2 werna
wernane, ijo, grey, silver, putih
ireng, coklat, Peteng Grey kanggo Black, abang
2.3 pangopènan
kurang
liyane
2.4 kekiatan
awet
awet
2.4.1 banyu tahan
59% Sedimentary Rocks rocks have it !
81% Igneous Rocks rocks have it !
2.4.2 ngeruk tahan
62% Sedimentary Rocks rocks have it !
86% Igneous Rocks rocks have it !
2.4.3 rereged tahan
43% Sedimentary Rocks rocks have it !
66% Igneous Rocks rocks have it !
2.4.4 angin tahan
38% Sedimentary Rocks rocks have it !
49% Igneous Rocks rocks have it !
2.4.5 asam tahan
22% Sedimentary Rocks rocks have it !
48% Igneous Rocks rocks have it !
2.5 katon
glassy, ​​vesicular lan foilated
glassy lan vesicular
3 Kagunaane
3.1 arsitektur
3.1.1 Efesus interior
aggregates hiasan, entryways, jogan, homes, interior
aggregates hiasan, interior
3.1.2 Efesus njaba
minangka watu bangunan, minangka madhep watu, Taman hiasan, mapeng watu
Taman hiasan, mapeng watu
3.1.3 Efesus arsitektur liyane
curbing
curbing
3.2 industri
3.2.1 industri construction
minangka flux ing produksi wesi baja lan babi, minangka agen sintering ing industri baja kanggo proses biji wesi, minangka watu ukuran, Pabrik semen, kanggo dalan kanthi jumlah ongko, nggawe semen alam, Pabrik Magnesium lan dolomite refractories
Pabrik semen, kanthi jumlah ongko construction, kanggo dalan kanthi jumlah ongko, ing babagan seni lan got karya
3.2.2 industri medical
dijupuk minangka tambahan kanggo calcium utawa Magnesium
durung digunakake
3.3 Efesus jaman
artefak
artefak, monumen, reca
3.4 Panggunaan sanès
3.4.1 komersial
digunakake ing Pabrik wêdakakêna Keramik, digunakake ing preparation saka asam sulfat lan diborite Silicon
minangka materi doyo tarik ing dalan salju-dijamin, nggawe kriya, jampel-suhu dhuwur, ing wise barbecue gas
4 Jinis
4.1 jinis
Ora Kasadhiya
Ora Kasadhiya
4.2 fitur
umume atos kanggo tutul, splintery, veined
kasedhiya ing persil saka werna lan patron, umume atos kanggo tutul, lumahan asring mengilap
4.3 pinunjul arkeologi
4.3.1 monumen
durung digunakake
used
4.3.2 monumen misuwur
ora ditrapake
data ora kasedhiya
4.3.3 reca
durung digunakake
used
4.3.4 patung misuwur
ora ditrapake
data ora kasedhiya
4.3.5 Pictographs
used
used
4.3.6 petroglyphs
used
used
4.3.7 figurines
durung digunakake
used
4.4 fosil
saiki
absen
5 Tatanan
5.1 tatanan
evaporite banyu-telat endhepan Mineral kang formulir saka konsentrasi lan crystallization dening penguapan saka solusi banyu.
Wangun scoria nalika magma ngemot jumlah ageng mili gas dipun bibaraken saka gunung mbledhos sak jeblugan.
5.2 komposisi
5.2.1 isi Mineral
kalsit, cancrinite, gypsum, kyanite, magnetite
apatite, biotite, kalsit, Feldspar, hematite, hornblade, ilmenite, magnetite, olivine, pyroxene, quartz, silika
5.2.2 senyawa isi
camg (co 3) 2, cao, calcium sulfat, kcl, MgO, NaCl
ca, NaCl
5.3 transformasi
5.3.1 metamorphism
19% Sedimentary Rocks rocks have it !
97% Igneous Rocks rocks have it !
5.3.2 jinis metamorphism
metamorphism kakubur, metamorphism cataclastic, kontak metamorphism, impact metamorphism, metamorphism regional
metamorphism kakubur, metamorphism cataclastic, kontak metamorphism
5.3.3 cuaca
78% Sedimentary Rocks rocks have it !
99% Igneous Rocks rocks have it !
5.3.4 jinis udan
ora ditrapake
udan biologi, udan kimia, udan mechanical
5.3.5 erosi
86% Sedimentary Rocks rocks have it !
92% Igneous Rocks rocks have it !
5.3.6 jinis erosi
ora ditrapake
erosi kimia, erosi gisik, erosi Glacier
6 Properties
6.1 fisik
6.1.1 atose
2-3
5-6
6.1.2 ukuran gandum
medium kanggo nggoleki coarse grained
grained nggoleki
6.1.3 rengat
conchoidal
conchoidal
6.1.4 tilas
putih
putih
6.1.5 porosity
kurang keropos
Highly keropos
6.1.6 luster
subvitreous kanggo kurang
subvitreous kanggo kurang
6.1.7 kekuatan compressive
Apa Flint
225.00 n / mm 2
Rank: 7 (Overall)
ora Sumadhiya
Rank: N/A (Overall)
Apa Obsidian
ADD ⊕
6.1.8 cleavage
sampurna
sampurna
6.1.9 kateguhan
ora kasedhiya
2.1
6.1.10 tartamtu gravitasi
2.86-2.99
ora Sumadhiya
6.1.11 transparan
tembus
opaque
6.1.12 Kapadhetan
2.8-2.9 g / cm 3
ora Sumadhiya
6.2 situs termal
6.2.1 kapasitas panas tartamtu
Apa tatanan wes..
0.92 kj / kg k
Rank: 10 (Overall)
ora Sumadhiya
Rank: N/A (Overall)
Apa Granulite
ADD ⊕
6.2.2 resistance
tahan panas, meksa tahan
tahan panas, impact tahan, meksa tahan, nyandhang tahan
7 Cadangan
7.1 celengan ing bawana wétan
7.1.1 asia
Not Available
Afghanistan, Indonesia, Japan, Russia
7.1.2 africa
Not Available
Ethiopia, Kenya, Tanzania
7.1.3 europe
united kingdom
greece, hungary, iceland, italy, turkey
7.1.4 wong
durung ketemu
durung ketemu
7.2 celengan ing bawana kulon
7.2.1 lor amerika
USA
Bahamas, Barbados, Canada, Costa Rica, Cuba, Jamaica, Mexico, USA
7.2.2 kidul amerika
Colombia, Paraguay
Argentina, Chile, Ecuador, Peru
7.3 celengan ing Oseania bawana
7.3.1 australia
Central Australia, Western Australia
New Zealand, Western Australia