Question
Find the odd one out.
- ∠5 and ∠2
- ∠1 and ∠7
- ∠3 and ∠4
- ∠1 and ∠2
Hint:
Use the property of parallel lines angle rules.
The correct answer is: ∠1 and ∠7
Complete step by step solution:
(alternate interior angles)
(does not belong to any parallel lines angles rules)
(co-interior angles)
(co-interior angles)
Here all the options other than B belong to parallel lines angles rules.
Hence option B is the correct answer.
Here all the options other than B belong to parallel lines angles rules.
Hence option B is the correct answer.
Related Questions to study
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4X - 3Y = 17
2X - 5Y = 5
Solve the system of equations by elimination :
4X - 3Y = 17
2X - 5Y = 5
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Some eighth graders are making muffins for a fund raiser. They have already made 200 muffins and figure they can make 40 muffins in an hour.
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Find the odd one out.
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Solve the following by using the method of substitution
2Y - 3X =0
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2Y - 3X =0
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5X + 6Y = - 6
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7X - 3Y = - 54
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Use Substitution to solve each system of equations :
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The graph shows the relationship between the number of cubic yards of mulch ordered and the total cost of the mulch delivered. What is the constant rate of change? What does it represent ? What is the initial value ? What might that represent?
The form of a linear equation is y = mx + b in the slope-intercept notation. Variables in the equation are the X and Y. The values m and b represent the line's slope (m) and the value of y when x is 0 and Y is 500. (b). Because the line crosses the y-axis at (0,y), when x is 0, y is referred to as the y-intercept. A two-variable linear equation can be thought of as a linear relationship between y and x or two variables where the value of one (often y) relies on the value of the other (usually x). In this scenario, x is referred to be an independent variable and y as a dependent variable because it depends on the x variable.
Often plotted along the horizontal axis represents the independent variable, x label or not. The majority of linear equations are functions. Alternatively, there is just one value of y for every value of x. You can calculate the value of the dependent variable, y, once the independent variable, x, has been given a value.