A fast way to answer it is that HNO3 is soluble in water and water is polar so HNO3 is polar
Another explanation is that HNO3's H will form dipole hydrogen bonds with other molecules (IMF) thus is considered as polar
If two covalently bonded atoms are identical, the bond is identified as a nonpolar covalent bond.
When a polar covalent bond and a nonpolar covalent substance combine, they may form a heterogeneous mixture where the polar and nonpolar components do not mix together. The polar and nonpolar substances will tend to separate due to their differing intermolecular forces.
The two types of covalent bonds are polar covalent bonds and nonpolar covalent bonds. Polar covalent bonds occur when the atoms share electrons unequally, leading to a slight charge separation. Nonpolar covalent bonds form when atoms share electrons equally.
Fe2O3 (iron oxide) is a nonpolar molecule because it has a symmetrical arrangement of its polar covalent bonds. The dipole moments in these bonds cancel each other out, resulting in a nonpolar overall molecule.
No. The individual bonds are polar, but BF3 is trigonal planar so the overall molecule is not polar.
If two covalently bonded atoms are identical, the bond is identified as a nonpolar covalent bond.
When a polar covalent bond and a nonpolar covalent substance combine, they may form a heterogeneous mixture where the polar and nonpolar components do not mix together. The polar and nonpolar substances will tend to separate due to their differing intermolecular forces.
P4: Nonpolar covalent bonds. H2S: Polar covalent bonds. NO2: Polar covalent bonds. S2Cl2: Nonpolar covalent bonds.
The two types of covalent bonds are polar covalent bonds and nonpolar covalent bonds. Polar covalent bonds occur when the atoms share electrons unequally, leading to a slight charge separation. Nonpolar covalent bonds form when atoms share electrons equally.
Fe2O3 (iron oxide) is a nonpolar molecule because it has a symmetrical arrangement of its polar covalent bonds. The dipole moments in these bonds cancel each other out, resulting in a nonpolar overall molecule.
No. The individual bonds are polar, but BF3 is trigonal planar so the overall molecule is not polar.
Both actually. It just depends on the electro-negativity of the atoms bonded together. If both have the same electro-negativity, it is a nonpolar covalent bond. Otherwise, you have a polar covalent bond.
This molecule contains polar covalent bonds.
Polar arrangements are associated with polar covalent bonds, where electrons are unequally shared between atoms. Nonpolar arrangements are associated with nonpolar covalent bonds, where electrons are shared equally between atoms.
It is polar because it is asymmetrical
Nonpolar covalent bonds do not dissolve in water because water is a polar solvent. The polarity of water molecules causes them to interact more strongly with other polar molecules or ions, making nonpolar molecules insoluble in water.
C2H2 (Ethyne or Acetylene) is nonpolar because the molecule has a linear geometry with symmetric electronegativity, resulting in an equal distribution of charge and no net dipole moment.