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Evgen [1.6K]
3 years ago
13

Numerical

Mathematics
1 answer:
goldfiish [28.3K]3 years ago
3 0

ANSWER: mine number is 130

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Complete the equation of the line through (6,-6) and (8,8)
geniusboy [140]

Answer:

8.8

Step-by-step explanation:

7 0
3 years ago
Consider the sequence -5, 1, 7, 13, 19, 25 write a recursive definition and a general formula for this sequence
mash [69]
The answer is definitely going to be 25,1,7,19,13 I think Ion kno
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3 years ago
Show that {(1,1,0),(1,0,1),(0,1,1)} is linearly independent subset of r^3
Keith_Richards [23]

Answer:  Yes, the given set of vectors is a linearly independent subset of R³.

Step-by-step explanation:  We are given to show that the following set of three vectors is a linearly independent subset of R³ :

B = {(1, 1, 0), (1, 0, 1), (0, 1, 1)} .

Since the given set contains three vectors which is equal to the dimension of R³, so it is a subset of R³.

To check the linear independence, we will find the determinant formed by theses three vectors as rows.

If the value of the determinant is non zero, then the set of vectors is linearly independent. Otherwise, it is dependent.

The value of the determinant can be found as follows :

D\\\\\\=\begin{vmatrix}1 & 1 & 0\\ 1 & 0 & 1\\ 0 & 1 & 1\end{vmatrix}\\\\\\=1(0\times1-1\times1)+1(1\times0-1\times1)+0(1\times1-0\times0)\\\\=1\times(-1)+1\times(1)+0\\\\=-1-1\\\\=-2\neq0.

Since the determinant is not equal to 0, so the given set of vectors is a linearly independent subset of R³.

Thus, the given set is a linearly independent subset of R³.

7 0
3 years ago
Plsss help me no linkss
Luda [366]
<h2>Figure 1: Pyramid.</h2>

Area of the Base: 96

Formula for Base Area: A = L × W

Volume: 640

Formula for Pyramid volume: \frac{L\times W\times H}{3}

<h2>Figure 2: Triangular Prism</h2>

Area of Base: 80

Formula for Base Area: 1/2 × base side × height

Volume: 960

Formula: 1/2 × B × L × H

3 0
3 years ago
What is 175.42 rounded to the nearest tenth?
weqwewe [10]
175.4 because 4 is the tenth place and 2 would round down
4 0
3 years ago
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