2.4.4. Let X be a metric space. (a) Prove that X and Ø are simultaneously open and closed subsets of X. (b) Show that if d is the discrete metric on a set X, then every subset of X is both open and closed. (c) Using the standard metric on F, are there any subsets of F other than F and Ø that are both open and closed? (The answer is no, but a proof requires more tools than we have developed here.)

Calculus: Early Transcendentals
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Chapter1: Functions And Models
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Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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Material :Daly analysis
2.4.4. Let X be a metric space.
(a) Prove that X and Ø are simultaneously open and closed subsets of X.
(b) Show that if d is the discrete metric on a set X, then every subset
of X is both open and closed.
(c) Using the standard metric on F, are there any subsets of F other than F
and Ø that are both open and closed? (The answer is no, but a proof requires
more tools than we have developed here.)
Transcribed Image Text:2.4.4. Let X be a metric space. (a) Prove that X and Ø are simultaneously open and closed subsets of X. (b) Show that if d is the discrete metric on a set X, then every subset of X is both open and closed. (c) Using the standard metric on F, are there any subsets of F other than F and Ø that are both open and closed? (The answer is no, but a proof requires more tools than we have developed here.)
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