Hello Guys today we will learn about cyclic molecule and molecular compounds.
(B) CYCLIC MOLECULE & MOLECULAR COMPOUND
=) Formed → Carbon - Carbon atom present in closed form
Definition →
When Carbon - Carbon atom which are present in a closed form to forms molecule and molecular compound known as cyclic molecule and molecular compound.
Fact →
Cyclic molecule & molecular compound will be formed →
(1) Due to combination Carbon - Carbon Present = In Closed form.
(2) Carbon - Carbon linged to each other = In a closed form.
(3) The Carbon - Carbon atom to attach to each = In a Close form.
(4) All ✅
Ans. (4) All
Example →
⇨According to close form it is two type such as→ (1) Homo cycle
(2) Hetro cyvle.
1) HOMO CYCLE MOLECULE & MOLECULAR COMPOUND
Homo Cycle
↓ ↓
Mean = Same + Cycle
Irdental (Identical)or idincal
Sence = (a) Only Carbon atom present in a cycle or
(b) Only Carbon atom present in closed form.
Definition
When Only Carbon Carbon atom present in a cyclic known as homo cyclic molecule and molecular compound.
Or
this is the type of cyclic molecule & molecular compound in which only carbon carbon present in a cycle is called homo cyclic molecule and molecular compound
Fact →
Homo cycle molecule and molecular compound will be formed →
(1) Only Carbon Carbon Atom present = In a cycle.
(2) Only Carbon Carbon atom linked to each other = In a cyclic form
(3) Only Carbon Carbon attach to each other = In a closed form.
(4) All ✅ Ans (4) All.
Example →
Above all are homo cyclic = (1) Yes (2) no
Reason →
In a 4th case in which carbon & other atom oxygen (O2) present in a cyclic so it causes not possible homo cyclic.
According to structure →
It is two type = (1) Alicyclic molecule & molecular compound
(2) Aromatic molecule & molecular compound.
Formed →
(1) The cycle contain only single bond
(2) The cycle contain only double bond.
(1) Alicyclic molecule & molecular compound
This type of homo cyclic in which single bond bond is called alicyclic molecule & molecular compound.
Example →
Above the example are alicyclic = (1) Yes (2) No ✅
Reason →
In a 3rd Case more than double bond are present in alicyclic
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