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Monica [59]
2 years ago
7

Solve. −2x 3. 25=0. 5x 4. 75 x=−0. 6 x=−1 x=−3. 2 I don't know.

Mathematics
1 answer:
worty [1.4K]2 years ago
5 0

Answer:

x=-0.6

Step-by-step explanation:

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Find the least common multiple<br> (LCM) of 7, 9, and 21.
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A triangle has a hypotenuse of 153 centimeters and a leg of 72 centimeters what is the length of the other leg
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Since you only have a^{2} and c^2 you change the equation to \sqrt{c^2 - a^2 = b^2}
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Simplify this expression : 2(y+z)
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A number has the same digit in its hundreds place and its hundredths place.
Yuki888 [10]

Answer:

One is 2 0's before the decimal point (100) and the other is 2 decimal places AFTER the decimal point (0.01)

Essentially, the question is asking us how many times do we multiply 0.01 to get 100? This will be how many times greater 100 is compared to 0.01

Lets move the decimal point  4 times to the right:

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Step-by-step explanation:

7 0
3 years ago
1. use the following normal-form game to answer the questions below. a. identify the one-shot nash equilibrium (10 pts) b. suppo
Bingel [31]

One-Shot Nash equilibrium is (A, C).

Yes the players can achieve payoffs that are better than the one-shot Nash equilibrium.

This is due to the fact that player 2 will choose strategy C if player A chooses option A. Player 2 will immediately choose Plan C if Player A chooses Option B. As a result, C becomes the second player's dominant strategy. The optimal decision for player 1 is to choose strategy A if player 2 chooses option C. Player 1 will select A if Player 2 chooses to choose D, making this Player 1's dominant move.

A Nash equilibrium is necessary for matrix reward games with two players if the row chosen is to maximize the payoff for the row player given the column chosen by the column player, and the column, in turn, is to maximize the payoff for the column player given the row chosen by the row player.

Learn more about Nash equilibrium:

brainly.in/question/4220195

#SPJ4

7 0
1 year ago
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