subject
Mathematics, 16.07.2019 12:30 stefanylopez731

Which statement describes whether a right triangle can be formed using one side length from each of these squares? yes, a right triangle can be formed because the sum of the areas of the two smaller squares does not equal the area of the largest square. yes, a right triangle can be formed because the sum of the areas of the two smaller squares equals the area of the largest square. no, a right triangle cannot be formed because the sum of the areas of the two smaller squares does not equal the area of the largest square. no, a right triangle cannot be formed because the sum of the areas of the two smaller squares equals the area of the largest square.


Which statement describes whether a right triangle can be formed using one side length from each of

ansver
Answers: 2

Another question on Mathematics

question
Mathematics, 21.06.2019 16:30
Which of the following is the correct ratio for converting kilograms to grams
Answers: 3
question
Mathematics, 21.06.2019 20:00
The holiday party will cost $160 if 8 people attend.if there are 40 people who attend the party, how much will the holiday party cost
Answers: 1
question
Mathematics, 22.06.2019 01:00
Which of the following is equal to the rational expression when x is not equal to -2 or -6?
Answers: 2
question
Mathematics, 22.06.2019 03:00
Abilliard ball is struck by a cue. it travels 1 0 0 cm 100cm before ricocheting off a rail and traveling another 1 2 0 cm 120cm into a corner pocket. the angle between the path as the ball approaches the rail and the path after it strikes the rail is 4 5 ∘ 45 ∘ . how far is the corner pocket from where the cue initially struck the ball? do not round during your calculations. round your final answer to the nearest centimeter.
Answers: 1
You know the right answer?
Which statement describes whether a right triangle can be formed using one side length from each of...
Questions
question
Chemistry, 21.09.2019 12:30
question
Mathematics, 21.09.2019 12:30
Questions on the website: 13722367