Answer:
Option A is correct.
Yes, by AA similarity criterion
Step-by-step explanation:
AA(Angle-Angle) Similarity Criterion states that if two angles of one triangle are congruent to two angles of another triangle, then the triangles are similar.
In ΔBAC and ΔCED
[Angle] [Given]
[Angle] [Common angle]
Therefore, by AA similarity criterion;
Therefore, ΔBAC and ΔCED are similar by AA similarity criterion.
It's weight would be: x*150 / 100
Where, x= weight of nickel
A nickel weighs 5 grams. As a dime is said to weigh 50% as much as a nickel, we calculate 50% of 5 to find the weight of the dime, which gives us 2.5 grams.
The subject of this question is in the context of Mathematics, more specifically proportional relationships. The weight of a nickel is 5 grams. As mentioned, a dime weighs 50% less than a nickel. So to find the weight of the dime, we calculate 50% of 5 grams.
First, to find 50%, we need to divide by 100 and then multiply by 50. That is: (5 / 100) * 50 = 2.5 .
So, a dime weighs 2.5 grams. Always remember, weight measurements can have slight variations depending upon measurement techniques and tools used. For instance, if you place a coin on a standard electronic balance, you may obtain a weight of 2.5 g with a nominal uncertainty in the measurement of ± 0.01 gram. However, in a general sense for our calculation with given data, the weight of a dime is indeed 2.5 grams.
#SPJ3
5x2(____) − 2(____)
What is the common factor that is missing from both sets of parentheses?
−2x − 7
2x + 7
−2x2 + 7
2x2 + 7
The common factor that is missing from both sets of parentheses is 2x + 7
To determine the missing factor, we would divide 10x³ + 35x² − 4x− 14 by 5x² – 2 using long division method as illustrated below
2x + 7
5x² – 2|10x³ + 35x² − 4x − 14
–(10x³ – 4x)
35x² – 14
–(35x² – 14)
0
The result obtained from the division is 2x + 7.
Therefore, the missing factor is 2x + 7
(5x² – 2)(2x + 7) = 5x²(2x + 7) – 2(2x + 7)
Learn more about polynomial:
Answer:
60 miles can leatherback sea turtle travel in 10 hours .
Step-by-step explanation:
As given
A leatherback sea turtle can travel at a speed of 48 miles in 8 hours.
i.e
48 miles = 8 hours
A leatherback sea turtle can travel in one hour.
1hour = 6 miles
Now calculate for the 10 hours .
A leatherback sea turtle travel distance in 10 hours = 6 × 10
= 60 miles
Therefore 60 miles can leatherback sea turtle travel in 10 hours .
Step-by-step explanation:
8x + 13x
= 21x
Ax + Bx
= (A+B)x