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Can you get to the treasure? You must find a path across the maze by stepping on adjacent squares. The square you move onto must be an equivalent fraction.

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Presentation on theme: "Can you get to the treasure? You must find a path across the maze by stepping on adjacent squares. The square you move onto must be an equivalent fraction."— Presentation transcript:

1 Can you get to the treasure? You must find a path across the maze by stepping on adjacent squares. The square you move onto must be an equivalent fraction to the one you are on! Diagonal moves are allowed. START

2 Can you get to the treasure? You must find a path across the maze by stepping on adjacent squares. The square you move onto must be an equivalent fraction to the one you are on! Diagonal moves are allowed. START

3 Put these fractions in order of size. Smallest First

4 We have a game which has a number of discs in seven different colours. These are kept in a flat square box with a square hole for each disc. There are 10 holes in each row and 10 in each column. So, there would be 100 discs altogether, except that there is a square booklet in one corner of the box! There is a different number of discs of each of the seven colours. Half of the discs are red, Quarter are black and a twelfth are blue. All the blue and green discs can be fitted into exactly one row of 10 slots so that it is completely full. One of the shortened rows (that is where the booklet is) is exactly filled with all the orange discs. Two of the shortened rows are filled with some of the red discs and the rest of the red discs exactly fill a number of complete rows (of 10) in the box. There is just one white disc and all the rest are yellow. Questions: How many discs are there altogether? What fraction of them are orange? What fraction are green? Yellow? White? Extension: If the booklet was 6x6 but the fraction of blue is unknown - What fractions of each other colours would be possible?

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