In Pacman game, Pacman has to traverse space and eat all the available food pellets without being eaten by moving ghosts. An important question that arises while estimating the computational runtime of solving a search problem is the size of the state space. Let's assume that the Pacman game has the following configurations: • Pacman can be in 150 distinct (x, y) positions, and there is only one Pacman • The direction of Pacman face can be North, South, East, or West. • There are two ghosts, each of which can be in 14 distinct (x, y) positions There are 30 food pellets, each of which can be eaten or not eaten Find the size of the state space.

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Question-1)
In Pacman game, Pacman has to traverse space and eat all the available food pellets without being
eaten by moving ghosts. An important question that arises while estimating the computational runtime
of solving a search problem is the size of the state space.
Let's assume that the Pacman game has the following configurations:
Pacman can be in 150 distinct (x, y) positions, and there is only one Pacman
• The direction of Pacman face can be North, South, East, or West.
• There are two ghosts, each of which can be in 14 distinct (x, y) positions
There are 30 food pellets, each of which can be eaten or not eaten
Find the size of the state space.
Transcribed Image Text:Question-1) In Pacman game, Pacman has to traverse space and eat all the available food pellets without being eaten by moving ghosts. An important question that arises while estimating the computational runtime of solving a search problem is the size of the state space. Let's assume that the Pacman game has the following configurations: Pacman can be in 150 distinct (x, y) positions, and there is only one Pacman • The direction of Pacman face can be North, South, East, or West. • There are two ghosts, each of which can be in 14 distinct (x, y) positions There are 30 food pellets, each of which can be eaten or not eaten Find the size of the state space.
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