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Question 22

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Let Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. , Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. be functions and let Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. . Consider the following statement:
If Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. and Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. exist then also Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. exists.
To prove this statement we should use:


A) The statement is not true.
B) The Product Rule applied to Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. and Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. .
C) The Quotient Rule applied to Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. and Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. .
D) The Sum Rule applied to Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. and Let   ,   be functions and let   . Consider the following statement: If   and   exist then also   exists. To prove this statement we should use: A)  The statement is not true. B)  The Product Rule applied to   and   . C)  The Quotient Rule applied to   and   . D)  The Sum Rule applied to   and   . E)  None of the above. .
E) None of the above.

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