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ELEN [110]
4 years ago
9

Which statements about opposites are true?

Mathematics
2 answers:
defon4 years ago
8 0
1. True
2. True
3. False
4. False
sergey [27]4 years ago
6 0

Answer:

(a) TRUE

(b) TRUE

(c)  FALSE

(d) TRUE

Step-by-step explanation:

" The "opposite" of any number is also known as it's " additive inverse" i.e. for any number 'a' the additive inverse is 'a' ".

(a) TRUE

Since let us consider any negative number '-5' then it's opposite is '5' since (-5)+5=0

(b) TRUE

this could be seen clearly from the number line.

(c) FALSE

this statement is false since we can take example of zero.

the opposite of zero is 0 but 0×0≠1.

(d) TRUE

since 0-0=0.


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True/false: x=7 DOES NOT satisfy the inequality x>7
geniusboy [140]
The answer is true because in order for x to be greater than 7, it would have to be 8 or above.
3 0
3 years ago
Newton's Method: Calculus I need assistance and a clear explanation so I can understand. Please be clear
marishachu [46]
Newtons method is a way to approximate the zero of a function. 
It is a recursive method such that the output becomes the new input, the goal is to approach the zero by having the inputs change by a smaller amount each iteration until that change is nearly 0.

First, let me explain where the method comes from.
The formula is really just a manipulation of the slope formula using 2 points; the point tangent to the curve, and the point where the tangent line crosses the x-axis.
If (x,y) is point on curve, then (x*,0) is point on tangent line at x-axis.
m = \frac{dy}{dx} = \frac{y - 0}{x - x^*}

Rearranging for x*:
x^* = x - \frac{y}{dy/dx}

This is the formula for newtons method. y = f(x), dy/dx = f'(x)
Now what happens is (x*,y*) becomes new point on curve with new tangent line with different slope.
This new line will cross x-axis at different point x** and so on until eventually f(x) gets really really close to 0.

Now for the example:
you need to take derivative f'(x) using product rule:
f(x) = x tan(x) - 1 \\  \\ f'(x) = tan(x) + x sec^2 (x)

Then its just a matter of plugging in values for x, and repeating until we get close to a zero.

First plug in x = 1
x_1 = 1 - \frac{(1)(tan 1) - 1}{tan 1 + (1)sec^2 (1)} = 0.888136 \\  \\ x_2 = .888136 - \frac{f(.888136)}{f'(.888136)} = 0.861465 \\  \\ x_3 = .861465 - \frac{f(.861465)}{f'(.861465)} = 0.860335 \\  \\ x_4 = .860335 - \frac{f(.860335)}{f'(.860335)} = 0.860334 \\  \\ x_5 = .860334 - \frac{f(.860334)}{f'(.860334)} = 0.860334

Now we can stop because x5 = x4 to 6 decimals, this means f(x) is very close to 0 and will serve as a good approximation for a solution.

Final Answer:
x = 0.860334
8 0
3 years ago
Suppose 12% of students surveyed said they have tried riding a zip line.
Arisa [49]

Answer:

12.

12% of 100= 12.

6 0
3 years ago
−5(1−5k)−4(2k+5) pleas
Kazeer [188]

Answer:

<h2>33k - 25</h2>

Step-by-step explanation:

-5(1 - 5k) - 4(2k + 5)      <em>use distributive property a(b + c) = ab + ac</em>

= (-5)(1) + (-5)(-5k) + (-4)(2k) + (-4)(5)

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= (25k - 8k) + (-5 - 20)

= 33k - 25

5 0
4 years ago
Fill in the blanks to complete the following statements. Bold left parenthesis a right parenthesis For the shape of the distribu
Nana76 [90]

Answer:

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Suppose the proportion of a population that has a certain characteristic is 0.35. The mean of the sampling distribution of ModifyingAbove p with caret from this population is mu Subscript ModifyingAbove p with caretequals​0.35.

Step-by-step explanation:

Normal distribution is the shape data takes as a symmetrical bell shaped curve. Normal approximation can only be taken when np or np(1-p) greater than 10.

Fill in the blanks to complete the following statements:

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  • Suppose the proportion of a population that has a certain characteristic is 0.35. The mean of the sampling distribution of ModifyingAbove p with caret from this population is mu Subscript ModifyingAbove p with caretequals​__0.35____.
6 0
4 years ago
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