on Programming Input: s1, s2, x1, y1, pawn s1,s2 - horizontal size and vertical size of the board respectively. x1, y1 - position of pawn in the board pawn - name of the piece. May only move 1 step at a time northward. Output: z1, z2, z3... *see image below* Constraints: Board height and width range from 7 to 10 and are independent of each other. Starting and end positions should always be within the specified size No special moves allowed like pawn moving 2 steps ahead from second row, en passant, and castling
on Programming Input: s1, s2, x1, y1, pawn s1,s2 - horizontal size and vertical size of the board respectively. x1, y1 - position of pawn in the board pawn - name of the piece. May only move 1 step at a time northward. Output: z1, z2, z3... *see image below* Constraints: Board height and width range from 7 to 10 and are independent of each other. Starting and end positions should always be within the specified size No special moves allowed like pawn moving 2 steps ahead from second row, en passant, and castling
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Python
Input: s1, s2, x1, y1, pawn
- s1,s2 - horizontal size and vertical size of the board respectively.
- x1, y1 - position of pawn in the board
- pawn - name of the piece. May only move 1 step at a time northward.
Output: z1, z2, z3... *see image below*
Constraints:
- Board height and width range from 7 to 10 and are independent of each other.
- Starting and end positions should always be within the specified size
- No special moves allowed like pawn moving 2 steps ahead from second row, en passant, and castling
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