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Alona [7]
3 years ago
14

Evaluate 6 * 2 ^ x for a) x = - 2 and (b) x = 3 . Write your answers in simplest form.

Mathematics
1 answer:
aliina [53]3 years ago
6 0

Answer:

a. \frac{3}{2} b. 48

Step-by-step explanation:

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10/9+(-11/90) evaluate
luda_lava [24]

Answer:

Step-by-step explanation:

10/9 + (-11/90)

100/90 + (-11/90) = 89/90

6 0
3 years ago
Read 2 more answers
. 14 - (-10) 4 -4 24 -24
Dennis_Churaev [7]

Answer:

24

Step-by-step explanation:

14 - (-10)

A negative negative is a postive

14 + 10

24

7 0
3 years ago
HELP ASAP! 10 QUESTIONS! 30 POINTS!
liraira [26]
1) D
(2/9) x=24

2) C
6x4=24
24=w
W=1/4(6)

3) A
67=9n
67=9n-2
9n-2=67

4) D
C+2x+x-3=56
4x=59
X=14.75
Katie payed 14.75

5) 91
Explanation: divide 18 by two and you get 9. When you add six and seven you carry on so those are your numbers. After you add you get your consecutive numbers, 91 and 92. 91 is the smallest so that is your answer

6)-18
Explanation: c+c+2=-34
2c+2-34
2x=-36
X=-18
18 is your answer

7) 17
Explanation: divide 22 is half. This is 11. 11+6=17. 17 is your answer

8)D

9)A
11-3 =x
However that isn’t an option so I would suggest to choose 3

10)D
4(17-n)=64
4 0
3 years ago
A 400 pound metal star is hanging on two cables which are attached to the ceiling. The left hand cable makes a 18° angle with th
notka56 [123]

Answer:

  • left: 123.607 lb
  • right: 380.423 lb

Step-by-step explanation:

By balancing horizontal and vertical forces, we find the cable tensions to be ...

  Ta = W·sin(b)/sin(a+b) . . . . . where W is the weight being held

  Tb = W·sin(a)/sin(a+b)

Where Ta is the tension in the cable that makes an angle of 'a' with respect to the vertical, and Tb is the tension in the cable that makes an angle of 'b' with respect to the vertical.

__

The given angles are with respect to the ceiling, so the angles with respect to the vertical will be their compmements.

<h3>left cable (a)</h3>

  angle 'a' is 90° -18° = 72°

  angle 'b' is 90° -72° = 18°

  a+b = 72° +18° = 90°

  Ta = (400 lb)sin(18°)/sin(90°) = 123.607 lb

<h3>right cable (b)</h3>

  Tb = (400 lb)sin(72°)/sin(90°) = 380.423 lb

_____

<em>Additional comment</em>

The nice expressions for cable tension come from the balance of forces.

  vertical: Ta·cos(a) +Tb·cos(b) = W

  horizontal: Ta·sin(a) = Tb·sin(b)

Solving the horizontal equation for Ta, we get ...

  Ta = Tb·sin(b)/sin(a)

Substituting into the vertical equaiton gives ...

  Tb·sin(b)cos(a)/sin(a) +Tb·cos(b) = W

Multiplying by sin(a) gives ...

  Tb(sin(b)cos(a) +sin(a)cos(b)) = W·sin(a)

Using the trig identity for the sine of the sum of angles, we can rewrite this in the form shown above:

  Tb = W·sin(a)/sin(a+b)

The problem is symmetrical with respect to 'a' and 'b', so the other tension is found by interchanging 'a' and 'b' in the equation:

  Ta = W·sin(b)/sin(a+b)

4 0
2 years ago
Anyone know how to do this
qwelly [4]
Option 1 
$0.1622



Option 2

$0.1839
3 0
3 years ago
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