what are isosceles triangles? when no sides are equal when all three si…
When two sides are equal
When two sides are equal
what are isosceles triangles?
when no sides are equal
when all three sides are equal
when two sides are equal
what are isosceles triangles?
when no sides are equal
when all three sides are equal
when two sides are equal
An isosceles triangle is defined by having exactly two sides of equal length, with the third side being a different length. The first option describes a scalene triangle, and the second describes an equilateral triangle.
When two sides are equal
An isosceles triangle is defined by having exactly two sides of equal length, with the third side being a different length. The first option describes a scalene triangle, and the second describes an equilateral triangle.
When two sides are equal
what are isosceles triangles? when no sides are equal when all three sides are equal when two sides are equal
Top-left cell: 180 Top-right cell: 6 Bottom-left cell: 600 Bottom-right cell: 20 Final product: 806
| Equation | Solution (Fraction) | Solution (Decimal) | |----------|---------------------|--------------------| | $2x=3$ | $\frac{3}{2}$ | $1.5$ | | $5y=3$ | $\frac{3}{5}$ | $0.6$…
- Fila 2: Circular el par (5, 2). - Fila 3: Circular el par (3, 3) (o la tarjeta con 3 y la otra con 4 dibujos, pero los números son 3 y 3? Wait, la tercera fila: primera tarjeta …
It's basically just a checklist so you don't get mixed up when a math problem has a bunch of stuff going on at once. You just go down the list in order: 1. **P**arentheses: Do any…
\(-15\)
The initial number of bacteria is 5. ### Turn 2 Answer Ça marche, regardons ça ! On dirait que tu es en plein dans les maths financières. Pour le **numéro 11**, on cherche le taux…
1. $\frac{391}{4}$ square feet 2. $\frac{81}{4}$ square feet 3. Yes, she has enough paint left.
$4^2$ is $\boldsymbol{<}$ $3^2 + 3^2$. Therefore, $\triangle JKL$ is $\boldsymbol{\text{an acute triangle}}$. $5^2$ is $\boldsymbol{=}$ $3^2 + 4^2$. Applying the same method, $\tr…
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