C=4e-
(on Periodic Table you find C in the Group 4 / 4valence electrons)
S=6e- (Group 6/ 6 valence electrons) multiply by 2
12e-
4e-
+ 12e-
____
16 valence electrons in CS2
http://wiki.answers.com/Q/What_is_the_electron_dot_diagram_for_CS2"
The number of shared electrons in the Lewis dot structure for CS2 is eight. CS2 is the chemical formula for carbon disulfide.
Zero! fulfills octet rule =)
The electron-pair geometry of CS2 is linear because the Lewis structure is S=C=S. Double bonds act as one electron pair to help determine electron-pair geometries of molecules according to VESPR theory
Yes, the compound known as CS2 is considered nonpolar. This is because it cannot have any dipole moments due to having a symmetrical molecular geometry.
For this you need the atomic (molecular) mass of CS2. Take the number of moles and multiply it by the atomic mass. Divide by one mole for units to cancel. CS2=76.2 grams10.00 moles CS2 × (76.2 grams) = 762 grams CS2
CaO>CS2 (CaO:2572℃ CS2:-110.8℃)
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The electron pair geometry for CS2 is Linear.
The electron-pair geometry of CS2 is linear because the Lewis structure is S=C=S. Double bonds act as one electron pair to help determine electron-pair geometries of molecules according to VESPR theory
Yes, the compound known as CS2 is considered nonpolar. This is because it cannot have any dipole moments due to having a symmetrical molecular geometry.
linear
Yes, CS2 Obeys the Octet rule. C double bonds with both Sulfur atoms and then each S has two pair of free electrons.
a cs2 with 100 grams of s8 is s90
For this you need the atomic (molecular) mass of CS2. Take the number of moles and multiply it by the atomic mass. Divide by one mole for units to cancel. CS2=76.2 grams10.00 moles CS2 × (76.2 grams) = 762 grams CS2
the chemical formula for carbon disulfide is CS2.
48,5 g sample of CS2 is the equivalent of 0,637 moles.
4.2 moles of CS2 contain 8,4 moles sulfur.
CaO>CS2 (CaO:2572℃ CS2:-110.8℃)
No. CS2 is not an electrolyte because CS2 can't be ionised as independent carbon ion does not exist.