Molecular geometry will be bent, electron geometry will be trigonal planar
tetrahedron
The only possible geometry of a diatomic molecule such as P2 is linear.
Linear
Trigonal planar.
It is known as trichloromethane or, more commonly, chloroform.
The molecular geometry of chloroform (CHCl3) is tetrahedral. This means that the central carbon atom is surrounded by three hydrogen atoms and one chlorine atom, with the bond angles between these atoms being approximately 109.5 degrees.
Yes, chloroform (CHCl3) has a tetrahedral molecular geometry, with the carbon atom at the center bonded to three hydrogen atoms and one chlorine atom. The molecule's shape is similar to a pyramid with a triangular base.
Each chloroform molecule (CHCl3) is composed of 25% hydrogen by mass. This is because the molecular weight of hydrogen is 1, with one hydrogen atom in each chloroform molecule, and the molecular weight of chloroform is 119.38.
Each chloroform molecule (CHCl3) is composed of 12.5% carbon by mass. Carbon has a molar mass of 12.01 g/mol and accounts for one out of the four atoms in each chloroform molecule.
considered a stable compound.
The electron geometry of a water molecule is tetrahedral even though the molecular geometry is _____. Bent
There are two pairs of nonbonding electrons in a chloroform molecule. Each chlorine atom contributes one nonbonding pair of electrons, resulting in a total of two pairs of nonbonding electrons in the chloroform molecule.
Cellulose is insoluble in chloroform. It is a polar molecule and chloroform is nonpolar, which results in poor solubility between the two substances.
A molecule of chloroform (CHCl3) consists of one carbon atom, one hydrogen atom, and three chlorine atoms, totaling five atoms.
Yes, chloroform is a polar molecule due to the difference in electronegativity between carbon and chlorine atoms. This causes an unequal sharing of electrons, resulting in a slight negative charge on the chlorine atoms and a slight positive charge on the carbon atom, making the molecule polar.
No, starch is not soluble in chloroform. Starch is a polar molecule, while chloroform is non-polar, so they are not able to dissolve in each other.