it's nearly 118.because it has three pair of electron,two bonding pairs and a lone pair.the repulsion between lone pair and bonding pairs is more than the repulsion between bonding pair and bonding pair.so the angle of the bond is 2 degree less than a trigonal planar with 3 bonding pairs (120).
The drawing for Dichloroethane (C2H4Cl2) consists of two carbon atoms connected by a single bond, each attached to two chlorine atoms with single bonds. This structure is a V-shaped molecule with a bond angle of approximately 109.5 degrees.
C2H4Cl2 => CH3 - CHCl2 or CH2Cl - CH2Cl . Bond order between carbons is '1' . It is an ALKANE. The names of the substances are ; CH3CHCl2 ; 1,1-dichloroethane & CH2Cl - CH2Cl ; 1,2-dichloroethane. C2H3Cl => H2C=CHCl . Bond order between carbons is '2' . It is an ALKENE. The name of the substance is ; chlorothene. NB Note the number (position) in the name(s) NNB Note the one letter 'A/E' , spelling in the names. Both are critical in the naming of the correct substance.
The bond angle of AlCl3 is 120 degrees.
The bond angle of N2O is 180 degrees.
The bond angle for H2S is approximately 92 degrees.
The drawing for Dichloroethane (C2H4Cl2) consists of two carbon atoms connected by a single bond, each attached to two chlorine atoms with single bonds. This structure is a V-shaped molecule with a bond angle of approximately 109.5 degrees.
C2H4Cl2 => CH3 - CHCl2 or CH2Cl - CH2Cl . Bond order between carbons is '1' . It is an ALKANE. The names of the substances are ; CH3CHCl2 ; 1,1-dichloroethane & CH2Cl - CH2Cl ; 1,2-dichloroethane. C2H3Cl => H2C=CHCl . Bond order between carbons is '2' . It is an ALKENE. The name of the substance is ; chlorothene. NB Note the number (position) in the name(s) NNB Note the one letter 'A/E' , spelling in the names. Both are critical in the naming of the correct substance.
The condensed formula for C2H4Cl2 is CH2Cl-CH2Cl.
C2H4Cl2 (dichloroethane) has tetrahedral geometry around both carbon atoms.
To find the number of moles of H atoms in C2H4Cl2, we first need to calculate the molar mass of C2H4Cl2. The molar mass is 98.96 g/mol. Next, we calculate the moles of C2H4Cl2 in 47.2742 grams by dividing the mass by the molar mass which is 0.478 moles. Since there are 4 H atoms in one molecule of C2H4Cl2, multiply the moles of C2H4Cl2 by 4 to find moles of H atoms which is 1.913 moles.
The bond angle of AlCl3 is 120 degrees.
The bond angle of N2O is 180 degrees.
The bond angle in CO2 is 180 degrees.
The bond angle for H2S is approximately 92 degrees.
The bond angle for NBr3 is approximately 107 degrees.
The bond angle for AsF3 is approximately 87.5 degrees.
The bond angle for IO2 is around 120 degrees.