04. CHEMICAL BONDING AND MOLECULAR STRUCTURE[KARNATAKA CET EXCLUSIVE]
CHEMISTRY(KCET)

285253 The correct order of boiling point in the following compounds is

1 \(\mathrm{HF}>\mathrm{H}_2 \mathrm{O}>\mathrm{NH}_3\)
2 \(\mathrm{H}_2 \mathrm{O}>\mathrm{HF}>\mathrm{NH}_3\)
3 \(\mathrm{NH}_3>\mathrm{H}_2 \mathrm{O}>\mathrm{HF}\)
4 \(\mathrm{NH}_3>\mathrm{HF}>\mathrm{H}_2 \mathrm{O}\)
CHEMISTRY(KCET)

285254 The formal charge on central oxygen atom in ozone is

1 0
2 +2
3 +1
4 -1
CHEMISTRY(KCET)

285255 The percentage of\(s\)-character in the hybrid orbitals of nitrogen in \(\mathrm{NO}_2^{+}, \mathrm{NO}_3^{-}\)and \(\mathrm{NO}_4^{+}\)respectively are

1 \(33.3 \%, 25 \%, 50 \%\)
2 \(50 \%, 33.3 \%, 25 \%\)
3 \(25 \%, 50 \%, 33.3 \%\)
4 \(33.3 \%, 50 \%, 25 \%\)
CHEMISTRY(KCET)

285256 Bond angle in\(\mathrm{PH}_4^{+}\)is more than that of \(\mathrm{PH}_3\). This is because

1 \(\mathrm{PH}_4^{+}\)has square planar structure
2 \(\mathrm{PH}_3\) has planar trigonal structure
3 hybridisation of P changes when \(\mathrm{PH}_3\) is converted to \(\mathrm{PH}_4^{+}\)
4 lone pair - bond pair repulsion exists in \(\mathrm{PH}_3\).
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
CHEMISTRY(KCET)

285253 The correct order of boiling point in the following compounds is

1 \(\mathrm{HF}>\mathrm{H}_2 \mathrm{O}>\mathrm{NH}_3\)
2 \(\mathrm{H}_2 \mathrm{O}>\mathrm{HF}>\mathrm{NH}_3\)
3 \(\mathrm{NH}_3>\mathrm{H}_2 \mathrm{O}>\mathrm{HF}\)
4 \(\mathrm{NH}_3>\mathrm{HF}>\mathrm{H}_2 \mathrm{O}\)
CHEMISTRY(KCET)

285254 The formal charge on central oxygen atom in ozone is

1 0
2 +2
3 +1
4 -1
CHEMISTRY(KCET)

285255 The percentage of\(s\)-character in the hybrid orbitals of nitrogen in \(\mathrm{NO}_2^{+}, \mathrm{NO}_3^{-}\)and \(\mathrm{NO}_4^{+}\)respectively are

1 \(33.3 \%, 25 \%, 50 \%\)
2 \(50 \%, 33.3 \%, 25 \%\)
3 \(25 \%, 50 \%, 33.3 \%\)
4 \(33.3 \%, 50 \%, 25 \%\)
CHEMISTRY(KCET)

285256 Bond angle in\(\mathrm{PH}_4^{+}\)is more than that of \(\mathrm{PH}_3\). This is because

1 \(\mathrm{PH}_4^{+}\)has square planar structure
2 \(\mathrm{PH}_3\) has planar trigonal structure
3 hybridisation of P changes when \(\mathrm{PH}_3\) is converted to \(\mathrm{PH}_4^{+}\)
4 lone pair - bond pair repulsion exists in \(\mathrm{PH}_3\).
CHEMISTRY(KCET)

285253 The correct order of boiling point in the following compounds is

1 \(\mathrm{HF}>\mathrm{H}_2 \mathrm{O}>\mathrm{NH}_3\)
2 \(\mathrm{H}_2 \mathrm{O}>\mathrm{HF}>\mathrm{NH}_3\)
3 \(\mathrm{NH}_3>\mathrm{H}_2 \mathrm{O}>\mathrm{HF}\)
4 \(\mathrm{NH}_3>\mathrm{HF}>\mathrm{H}_2 \mathrm{O}\)
CHEMISTRY(KCET)

285254 The formal charge on central oxygen atom in ozone is

1 0
2 +2
3 +1
4 -1
CHEMISTRY(KCET)

285255 The percentage of\(s\)-character in the hybrid orbitals of nitrogen in \(\mathrm{NO}_2^{+}, \mathrm{NO}_3^{-}\)and \(\mathrm{NO}_4^{+}\)respectively are

1 \(33.3 \%, 25 \%, 50 \%\)
2 \(50 \%, 33.3 \%, 25 \%\)
3 \(25 \%, 50 \%, 33.3 \%\)
4 \(33.3 \%, 50 \%, 25 \%\)
CHEMISTRY(KCET)

285256 Bond angle in\(\mathrm{PH}_4^{+}\)is more than that of \(\mathrm{PH}_3\). This is because

1 \(\mathrm{PH}_4^{+}\)has square planar structure
2 \(\mathrm{PH}_3\) has planar trigonal structure
3 hybridisation of P changes when \(\mathrm{PH}_3\) is converted to \(\mathrm{PH}_4^{+}\)
4 lone pair - bond pair repulsion exists in \(\mathrm{PH}_3\).
CHEMISTRY(KCET)

285253 The correct order of boiling point in the following compounds is

1 \(\mathrm{HF}>\mathrm{H}_2 \mathrm{O}>\mathrm{NH}_3\)
2 \(\mathrm{H}_2 \mathrm{O}>\mathrm{HF}>\mathrm{NH}_3\)
3 \(\mathrm{NH}_3>\mathrm{H}_2 \mathrm{O}>\mathrm{HF}\)
4 \(\mathrm{NH}_3>\mathrm{HF}>\mathrm{H}_2 \mathrm{O}\)
CHEMISTRY(KCET)

285254 The formal charge on central oxygen atom in ozone is

1 0
2 +2
3 +1
4 -1
CHEMISTRY(KCET)

285255 The percentage of\(s\)-character in the hybrid orbitals of nitrogen in \(\mathrm{NO}_2^{+}, \mathrm{NO}_3^{-}\)and \(\mathrm{NO}_4^{+}\)respectively are

1 \(33.3 \%, 25 \%, 50 \%\)
2 \(50 \%, 33.3 \%, 25 \%\)
3 \(25 \%, 50 \%, 33.3 \%\)
4 \(33.3 \%, 50 \%, 25 \%\)
CHEMISTRY(KCET)

285256 Bond angle in\(\mathrm{PH}_4^{+}\)is more than that of \(\mathrm{PH}_3\). This is because

1 \(\mathrm{PH}_4^{+}\)has square planar structure
2 \(\mathrm{PH}_3\) has planar trigonal structure
3 hybridisation of P changes when \(\mathrm{PH}_3\) is converted to \(\mathrm{PH}_4^{+}\)
4 lone pair - bond pair repulsion exists in \(\mathrm{PH}_3\).