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Ksju [112]
3 years ago
5

Consider the proposition " There exists an integer n such that for all integers m, m

Mathematics
1 answer:
ollegr [7]3 years ago
3 0

Answer:

a) “There is no integer n such that for all integers m, m<n”

b) The proposition is false and its negation true.

Step-by-step explanation:

a)

The negation of the proposition is

<em>“There is no integer n such that for all integers m, m<n” </em>

b)

It is easy to prove that the proposition is false.

If there existed such an integer n , then since n+1 is an integer, n+1 < n, which is a <em>contradiction. </em>

So such an integer n cannot exist.

Since the proposition is false, its negation is true.

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3 years ago
Pls help me i will mark brainliest if you are right !
tekilochka [14]

Answer:

second option

Step-by-step explanation:

diameter= 22 cm

radius = diameter/2

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5 0
3 years ago
find the equation of the circle where (-9,4),(-2,5),(-8,-3),(-1,-2) are the vertices of an inscribed square.
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Check the picture below, so, that'd be the square inscribed in the circle.

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that means the radius r = 5.

now, what's the center?  well, the Midpoint of the diagonals, is really the center of the circle, let's check,

\bf \textit{middle point of 2 points}\\ \quad \\&#10;\begin{array}{lllll}&#10;&x_1&y_1&x_2&y_2\\&#10;%  (a,b)&#10;&({{ -2}}\quad ,&{{ 5}})\quad &#10;%  (c,d)&#10;&({{ -8}}\quad ,&{{ -3}})&#10;\end{array}\qquad &#10;\left(\cfrac{{{ x_2}} + {{ x_1}}}{2}\quad ,\quad \cfrac{{{ y_2}} + {{ y_1}}}{2} \right)&#10;\\\\\\&#10;\left( \cfrac{-8-2}{2}~,~\cfrac{-3+5}{2} \right)\implies (-5~,~1)

so, now we know the center coordinates and the radius, let's plug them in,

\bf \textit{equation of a circle}\\\\ &#10;(x-{{ h}})^2+(y-{{ k}})^2={{ r}}^2&#10;\qquad &#10;\begin{array}{lllll}&#10;center\ (&{{ h}},&{{ k}})\qquad &#10;radius=&{{ r}}\\&#10;&-5&1&5&#10;\end{array}&#10;\\\\\\\&#10;[x-(-5)]^2-[y-1]^2=5^2\implies (x+5)^2-(y-1)^2=25

8 0
4 years ago
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weeeeeb [17]
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4 years ago
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natima [27]

Answer:

It is distributive property

3 0
3 years ago
Read 2 more answers
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