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" This notebook was prepared by [Donne Martin](https://github.com/donnemartin). Source and license info is on [GitHub](https://github.com/donnemartin/interactive-coding-challenges). "
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]
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" # Challenge Notebook "
]
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" ## Problem: Determine the height of a tree. \n " ,
" \n " ,
" * [Constraints](#Constraints) \n " ,
" * [Test Cases](#Test-Cases) \n " ,
" * [Algorithm](#Algorithm) \n " ,
" * [Code](#Code) \n " ,
" * [Unit Test](#Unit-Test) \n " ,
" * [Solution Notebook](#Solution-Notebook) "
]
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" ## Constraints \n " ,
" \n " ,
" * Is this a binary tree? \n " ,
" * Yes \n " ,
" * Can we assume we already have a Node class with an insert method? \n " ,
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" * Yes \n " ,
" * Can we assume this fits memory? \n " ,
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" * Yes "
]
} ,
{
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" ## Test Cases \n " ,
" \n " ,
" * 5 -> 1 \n " ,
" * 5, 2, 8, 1, 3 -> 3 "
]
} ,
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" ## Algorithm \n " ,
" \n " ,
" Refer to the [Solution Notebook](http://nbviewer.ipython.org/github/donnemartin/interactive-coding-challenges/blob/master/graphs_trees/tree_height/height_solution.ipynb). If you are stuck and need a hint, the solution notebook ' s algorithm discussion might be a good place to start. "
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" ## Code "
]
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" %r un ../bst/bst.py \n " ,
" %lo ad ../bst/bst.py "
]
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" class BstHeight(Bst): \n " ,
" \n " ,
" def height(self, node): \n " ,
" # TODO: Implement me \n " ,
" pass "
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]
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" ## Unit Test "
]
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" source " : [
" **The following unit test is expected to fail until you solve the challenge.** "
]
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" # %lo ad test_height.py \n " ,
" from nose.tools import assert_equal \n " ,
" \n " ,
" \n " ,
" class TestHeight(object): \n " ,
" \n " ,
" def test_height(self): \n " ,
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" bst = BstHeight(Node(5)) \n " ,
" assert_equal(bst.height(bst.root), 1) \n " ,
" bst.insert(2) \n " ,
" bst.insert(8) \n " ,
" bst.insert(1) \n " ,
" bst.insert(3) \n " ,
" assert_equal(bst.height(bst.root), 3) \n " ,
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" \n " ,
" print( ' Success: test_height ' ) \n " ,
" \n " ,
" \n " ,
" def main(): \n " ,
" test = TestHeight() \n " ,
" test.test_height() \n " ,
" \n " ,
" \n " ,
" if __name__ == ' __main__ ' : \n " ,
" main() "
]
} ,
{
" cell_type " : " markdown " ,
" metadata " : { } ,
" source " : [
" ## Solution Notebook \n " ,
" \n " ,
" Review the [Solution Notebook](http://nbviewer.ipython.org/github/donnemartin/interactive-coding-challenges/blob/master/graphs_trees/tree_height/height_solution.ipynb) for a discussion on algorithms and code solutions. "
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