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Probability Counting - Duplicate Orders in 5 Cards, 2 Repeat - to Equation (Level 1)

This math topic explores probability, specifically focusing on the arrangements of cards while maintaining a certain order. It delves into calculating the number of ways to organize cards, some of which repeat, using multiplication to express combinations. The problems also introduce students to concepts from binomial notation and probability within the context of arranging a set number of items (cards) where order is crucial. This is part of a broader study of probability and statistics. Each question requires students to consider different scenarios of card arrangements and calculate the total possible combinations.

Work on practice problems directly here, or download the printable pdf worksheet to practice offline.

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Duplicate Orders in 5 Cards, 2 Repeat - to Equation

Complete these online problems with 80% or 4 correct answers in a row. Results are immediate.


How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.

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Probability Counting - Duplicate Orders in 5 Cards, 2 Repeat - to Equation Worksheet

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Math worksheet on 'Probability Counting - Duplicate Orders in 5 Cards, 2 Repeat - to Equation (Level 1)'. Part of a broader unit on 'Probability and Statistics - Binomial Notation Intro' Learn online: app.mobius.academy/math/units/probability_and_statistics_probability_with_binomial_notation_intro/
1
How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.
An svg image showing a math problem
a A LaTex expression showing 1 over 2 times 2
b A LaTex expression showing 3 times 2 times 2
c A LaTex expression showing 2 over 2 times 2
d A LaTex expression showing 2 times 2
e A LaTex expression showing 2 times 4 times 3 times 2
f A LaTex expression showing 4 times 3 times 2 times 2
2
How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.
An svg image showing a math problem
a A LaTex expression showing 2 over 2 times 2
b A LaTex expression showing 1 over 2 times 2
c A LaTex expression showing 4 times 3 times 2 times 2
d A LaTex expression showing 2 times 4 times 3 times 2
e A LaTex expression showing 3 times 2 times 2
f A LaTex expression showing 2 times 2
3
How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.
An svg image showing a math problem
a A LaTex expression showing 4 times 3 times 2 times 2
b A LaTex expression showing 5 times 4 times 3 times 2 times 2
c A LaTex expression showing 3 times 2 times 2
d A LaTex expression showing 3 times 2 times 4 times 3 times 2
e A LaTex expression showing 2 over 3 times 2 times 2
f A LaTex expression showing 1 over 3 times 2 times 2
4
How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.
An svg image showing a math problem
a A LaTex expression showing 2 times 3 times 2
b A LaTex expression showing 3 times 2 times 2
c A LaTex expression showing 1 over 2 times 2
d A LaTex expression showing 2 times 2
e A LaTex expression showing 2 times 4 times 3 times 2
f A LaTex expression showing 4 times 3 times 2 times 2
5
How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.
An svg image showing a math problem
a A LaTex expression showing 2 over 3 times 2 times 2
b A LaTex expression showing 3 times 2 times 2
c A LaTex expression showing 1 over 3 times 2 times 2
d A LaTex expression showing 5 times 4 times 3 times 2 times 2
e A LaTex expression showing 4 times 3 times 2 times 2
f A LaTex expression showing 3 times 2 times 4 times 3 times 2
6
How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.
An svg image showing a math problem
a A LaTex expression showing 3 times 2 times 3 times 2
b A LaTex expression showing 2 over 2 times 3 times 2
c A LaTex expression showing 2 times 3 times 2
d A LaTex expression showing 1 over 2 times 3 times 2
e A LaTex expression showing 4 times 3 times 2 times 3 times 2
f A LaTex expression showing 2 times 4 times 3 times 2
7
How many ways can these cards be arranged to still be arranged smallest to largest? Show as a multiplication.
An svg image showing a math problem
a A LaTex expression showing 1 over 2 times 2
b A LaTex expression showing 3 times 2 times 2
c A LaTex expression showing 2 over 2 times 2
d A LaTex expression showing 4 times 3 times 2 times 2
e A LaTex expression showing 2 times 2
f A LaTex expression showing 2 times 3 times 2