際際滷

際際滷Share a Scribd company logo
INSTITUTE NUCLEAR MODULE ASSUNNAH TITANIUM Sifat kegunaan Blogsite:institutenma.wordpress.com
1.mempuyai tingkat kekerasan sama dengan besi tetapi massanya/beratnya lebih ringan dari besi (sekitar 45%).  [u1]   [u1] titanium is as strong as some  steels , but 45% lighter. [
2.digunakan untuk bahan pesawat,pesawat antariksa,bahan tambahan pada kosmetik. [u1]   [u1] Titanium can be  alloyed  with  iron ,  aluminium ,  vanadium ,  molybdenum , among other elements, to produce strong lightweight alloys for aerospace ( jet engines ,  missiles , and  spacecraft )
3.berwarna silver dan tidak mudah mengalami korosi. [u1]   [u1] However, it is slow to react with water and air, because it forms a  passive  and protective oxide coating that protects it from further reaction. [2]  When it first forms, this protective layer is only 12  nm  thick but continues to slowly grow; reaching a thickness of 25 nm in four yearsHowever, it is slow to react with water and air, because it forms a  passive  and protective oxide coating that protects it from further reaction. [2]  When it first forms, this protective layer is only 12  nm  thick but continues to slowly grow; reaching a thickness of 25 nm in four years
penutup Doa penutup majlis

More Related Content

Institute nuclear module assunnah

  • 1. INSTITUTE NUCLEAR MODULE ASSUNNAH TITANIUM Sifat kegunaan Blogsite:institutenma.wordpress.com
  • 2. 1.mempuyai tingkat kekerasan sama dengan besi tetapi massanya/beratnya lebih ringan dari besi (sekitar 45%). [u1] [u1] titanium is as strong as some steels , but 45% lighter. [
  • 3. 2.digunakan untuk bahan pesawat,pesawat antariksa,bahan tambahan pada kosmetik. [u1] [u1] Titanium can be alloyed with iron , aluminium , vanadium , molybdenum , among other elements, to produce strong lightweight alloys for aerospace ( jet engines , missiles , and spacecraft )
  • 4. 3.berwarna silver dan tidak mudah mengalami korosi. [u1] [u1] However, it is slow to react with water and air, because it forms a passive and protective oxide coating that protects it from further reaction. [2] When it first forms, this protective layer is only 12 nm thick but continues to slowly grow; reaching a thickness of 25 nm in four yearsHowever, it is slow to react with water and air, because it forms a passive and protective oxide coating that protects it from further reaction. [2] When it first forms, this protective layer is only 12 nm thick but continues to slowly grow; reaching a thickness of 25 nm in four years