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Al. Let E be a non-empty set and let d:ExE0, oo). (a) Give the three conditions that d must satisfy to be a metric on E. (b)
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Answer #1

(a) Three condition are following

(1) d(x,y) = 0 if and only if x=y. (2) d(x,y) = d(y,x) for all x,y \in E (3) d(x,y) \leq d(x,z) + d(z,y) for all x,y and z \in E.

(b) Open ball of radius r around a = \{x\in E: d(a,x)<r\} . Closed ball of radius r around a = \{x\in E: d(a,x)\leq r\} .

(c) A sequence (x_n) converges to a point p if for every  open neighbourhood U of p  there exists k \in \mathbb{N}} such that such that x_n\in U \;\textnormal{for all}\; n \geq k.

(d) A point p \in E is closure point of A if every neighbourhood of p intersect with A.

(e) Using the third condition of metric space and definition of convergence one can easily proof the required result.

  

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