Use JFLAP to create a standard TM that does not use transitions from final states, which takes genetic strings as input, and accepts L = { w | w starts with C, ends with T, and #A(w) % 3 = #G(w) % 2}. For example, CAGGGT ∈ L; w = CAAAT ∈ L (note that the number of G's in w = 0, and 0 % 2 = 0); w = CAGGT ∉ L because the number of A's in w % 3 = 1, but the # of G's in w % 2 = 0; and AGGGT ∉ L because it does not start with C.
Use JFLAP to create a standard TM that does not use transitions from final states, which takes genetic strings as input, and accepts L = { w | w starts with C, ends with T, and #A(w) % 3 = #G(w) % 2}. For example, CAGGGT ∈ L; w = CAAAT ∈ L (note that the number of G's in w = 0, and 0 % 2 = 0); w = CAGGT ∉ L because the number of A's in w % 3 = 1, but the # of G's in w % 2 = 0; and AGGGT ∉ L because it does not start with C.
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Use JFLAP to create a standard TM that does not use transitions from final states, which takes genetic strings as input, and accepts L = { w | w starts with C, ends with T, and #A(w) % 3 = #G(w) % 2}. For example, CAGGGT ∈ L; w = CAAAT ∈ L (note that the number of G's in w = 0, and 0 % 2 = 0); w = CAGGT ∉ L because the number of A's in w % 3 = 1, but the # of G's in w % 2 = 0; and AGGGT ∉ L because it does not start with C.
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