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Deleted average numbers
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code/kelin/Average-numbers.py

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# kelin-lab00-average-numbers
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nums = [5, 0, 8, 3, 4, 1, 6]
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x = sum(nums)
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i = len(nums)
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answer = (x / i)
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print(answer)
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# Prints Answer 3.857142857142857 Average of 5, 0, 8, 3, 4, 1, and 6
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# Version 2
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user_nums = []
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while True:
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user = input("Enter numbers to average, and type 'done' to calculate: ")
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if user == "done":
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print((sum(user_nums)) / (len(user_nums)))
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else:
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user_nums.append(int(user))
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print(user_nums)
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# User enters number and displays them in a list until they type 'done' and the average is given.
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# Lab 4: Blackjack Advice
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# Let's write a python program to give basic blackjack playing advice during a game by asking the player for cards.
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# First, ask the user for three playing cards (A, 2, 3, 4, 5, 6, 7, 8, 9, 10, J, Q, or K).
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# Then, figure out the point value of each card individually. Number cards are worth their number, all face cards are worth 10.
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# At this point, assume aces are worth 1. Use the following rules to determine the advice:
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deck_one = ['A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K']
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deck_two = ['A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K']
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deck_three = ['A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K','A','2','3','4','5','6','7','8','9','10','J','Q','K']
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import random
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random.shuffle(deck_one)
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random.shuffle(deck_two)
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random.shuffle(deck_three)
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first_card = random.choice(deck_one)
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second_card = random.choice(deck_two)
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third_card = random.choice(deck_three)
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print(f"Welcome to Blackjack.","Your cards are:",first_card,second_card,third_card)
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if first_card == 'A':
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first_card = int('1')
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elif first_card == 'J':
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first_card = int('10')
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elif first_card == 'Q':
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first_card = int('10')
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elif first_card == 'K':
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first_card = int('10')
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if second_card == 'A':
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second_card = int('1')
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elif second_card == 'J':
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second_card = int('10')
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elif second_card == 'Q':
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second_card = int('10')
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elif second_card == 'K':
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second_card = int('10')
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if third_card == 'A':
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third_card = int('1')
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elif third_card == 'J':
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third_card = int('10')
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elif third_card == 'Q':
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third_card = int('10')
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elif third_card == 'K':
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third_card = int('10')
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first_card = (int(first_card))
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second_card = (int(second_card))
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third_card = (int(third_card))
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card_totals = (first_card + second_card + third_card)
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if card_totals < 17:
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print("You should hit.")
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elif card_totals in range (17, 21):
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print("You should stay.")
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elif card_totals > 21:
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print("Sorry you busted.")
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elif card_totals > 20:
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print("Congratulations, Blackjack!")
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# Version 2 (optional)
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# Aces can be worth 11 if they won't put the total point value of both cards over 21. Remember that you can have multiple aces in a hand.
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# Try generating a list of all possible hand values by doubling the number of values in the output whenever you encounter an ace.
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# For one half, add 1, for the other, add 11. This ensures if you have multiple aces that you account for the full range of possible values.

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