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- Given: Language L3 = {w ϵ {a,b}* | w starts in ab and ends in bb} Construct the DFA representing the given language L3. Assume the layout of the DFA is as follows: ->A->B->C->D->E*. That is, the number of states are five (5) and A is the starting state and E is the accepting state. How many self-loop edge/s in the constructed DFA representing the given language L3? Don't give wrong answer. Upvote for only correct one else downI keep getting the wrong answer can you please help me with this: Could you assist me with question 2.7 part C? I'm having difficulty with this problem and would greatly appreciate help in creating a state diagram for the push-down automaton in part C. question for 2.7 2.7 Give informal English descriptions of PDAs for the language. c. {w#x | w R is a substring of x for w, x ∈ {0,1} ∗ }I added my incorrect answer and i think I am very close.I'm consistently arriving at an incorrect answer. Would you mind aiding me with question 2.7, specifically part C? I'm encountering challenges with this particular problem and would sincerely appreciate assistance in developing a state diagram for the push-down automaton in part C.question for 2.7 2.7 Give informal English descriptions of PDAs for the language. c. {w#x | w R is a substring of x for w, x ∈ {0,1} ∗ }
- Could you assist me with question 2.7 part B? I'm finding this problem quite challenging and would appreciate help with creating a state diagram for the push-down automaton related to part B. I started the problem shown in the photo but I don't know why it is incorrect, can you use the photo that I used.question for 2.7 2.7 Give informal English descriptions of PDAs for the language. B. The complement of the language {a^n b^n | n ≥ 0}A={w ∈{0, 1}* | w starts with a symbol and ends with the other symbol} The state diagram for an NFA?Computer Science Write in the programming language Pythona pushdown automaton simulator (a program that simulates a pushdown automaton) where: V = {w | w ∈ {a, b}* and w starts and ends with the same symbol}.
- Give a description representation of a Turing Machine Mg for language B = {w over {0, 1, #3*| w contains an equal number of O's and 1's and w contains exactly 1 #"}. 10# E B, 01#10 EB, 01##01 € Band #001 € B. In this case, your description should be for a single tape TM. In addressing be sure to pay special attention to final (halting) configurations, when required. you are expected to provide pseudocode for the corresponding machines. Remember that in your pseudocode, you need to be clear of what are your reading and writing on the tape (and which tape if you use more than 1), the direction in which the tape heads will move, and when the Turing Machine should halt and accept and/or halt and reject. Having said that, the point is not for you to describe state-by-state what the Turing Machine would look like. Instead, the goal of the description is for you to offer a high level overview that considers what to read/write in which order, in which directions the tape would move and how you…(A) Design in JFLAP a simulator of a deterministic finite automaton (DFA) that (only) recognizesthe language Λ, where Λ is the first letter of your family name. (B) Test the simulator for one accepting and one rejecting string.Language ABinary numbersExample: A = {00000000, 0101, 111111,Given: Language L2 = {w ϵ {a,b}* | w contains substring aab} Construct the DFA representing the given language L2. Assume the layout of the DFA is as follows: ->A->B->C->D*. That is, the number of states are four (4) and A is the starting state and D is the accepting state. How many self-loop edge/s in the constructed DFA representing the given language L2?
- IN HASKELL PROGRAMMING LANGUAGE PLEASE In case you do not know it: the game is played on a 3x3 grid that is initially empty. Two players are playing, by alternatingly making moves. A move by a player places their token (an X for player 1, an O for player 2) into a cell that was empty. We are using algebraic notations for indexing the positions in the board, with A,B,C indexing the columns and 1,2,3 the rows. Specifically, these coordinates would be used in the implementation for moves made by a human player. If the X X O Figure 1: Sample board position same token appears 3 times in any of the three columns, three rows or two main diagonals the game is over and that player wins. If the grid is filled without that happening the game is a draw. For the depicted board, we have Xs in positions C3 and A2, and an O in position B1. It would be O’s turn to make a move; a legal move would be C2, but it is not a good move, because X can force a win by responding A1. O cannot force a win, but…Given the declarations:m,n, s: ℤa: Authorcurrent: ℙ Accoutsnovelists: ℙ AuthorSay what the type is of each of the following terms:(a) m+n(b) {s, n} (c) {{n},{s}} (d) {current} (e) novelists ∪ {a}(f) {{a}} ∪ {novelists}Use the Pumping Lemma to show the following language L is NOT regular. L= {w E (a, b, c}* ; where w has equal number of a's, b's, and c's}