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What is the shape of the IBr2- ion ?

(1) Linear 

(2) Bent shape with bond angle of about 90° 

(3) Bent shape with bond angle of about 109°

(4) Bent shape with bond angle of about 120°

Subtopic:  Hybridisation |
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What is the shape of the ClF3 molecule?

(1) Trigonal planar 

(2) Trigonal pyramid 

(3) T-shaped 

(4) Tetrahedral 

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Which of the following compound has the smallest bond angle (XAZ) in each series respectively?

(1) OSF2OSCl2             OSBr2

(2) SbCl3     SbBr3              SbI3

(3) PI3         AsI3                  SbI3

Options are as follows: 

(a) OSF2,SbClandPI3    (b) OSBr2,SBI3andPI3

(c) OSF2,SBI3andPI3       

(4) OSF2,SBCl3andSBI3

Subtopic:  Hybridisation |
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According to VSEPR theory in, which species do all the atoms lie in the same plane?

1. CH3+                                   2. CH3-

(1) 1 only                               

(2) 2 only 

(3) both 1 and 2                     

(4) neither 1 nor 2

Subtopic:  Hybridisation |
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Idetify the correct sequence of increasing number of π bonds in the structure of the following molecules :

(I) H2S2O6     (II) H2SO3   (III)  H2S2O5

1. I II and III         2. II I and III

3. II III and I         4. I III and II

Subtopic:  Types of Chemical Bond |
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The state of hybridisation of central atom in dimer of BH3 and BeH2 is:

(1) sp2,sp2   

(2) sp3,sp2 

(3) sp3,sp3 

(4) sp2,sp3

Subtopic:  Hybridisation |
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Which of the following species/molecules does not have same number of bond pairs and lone pairs?

(1) OCN- 

(2) H2O

(3) C2H2Cl2

(4) O3

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OO bond length (inA° ) in  H2O2 and O2F2 is respectively:

1. 1.22 , 1.48 2. 1.48 , 1.22
3. 1.22 , 1.22 4. 1.48 , 1.48
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The bond length of the SO bond in maximum in which of the following compounds?

1. SOCI2 

2. SOBr2 

3.SOF2 

4. All have the same length

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Out of the two compounds shown below, the vapour pressure of B at a particular temperature is expected to be :

(A)  and (B) 

(1) Higher than that of A

(2) Lower than that of A

(3) Same as that of A

(4) Can be higher or lower depending upon the size of the vessel

Subtopic:  van der Waal Force & Hydrogen Bonding |
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