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Stells [14]
3 years ago
13

Assume the relationship is a direct variation, what is the equation ? please help asap !

Mathematics
1 answer:
HACTEHA [7]3 years ago
4 0

Answer:

español nuestro tos pelear quedarse

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Helpp I’m confused pleasee!
Natasha_Volkova [10]

Answer:

8x

Step-by-step explanation:

5 0
3 years ago
Read 2 more answers
Fiona has a jar filled with 150 coins made up of quarters and nickels. the total value of coins is $25.10. Let x Represent the n
ratelena [41]

Option D would probably be the right choice. Because x is the variable for coins, there would be x amount of quarters, and because there are 150 coins, 150 - x would be the remainder.

6 0
4 years ago
If we convert 0.14 x10^3 to scientific notation, which direction should the
podryga [215]

Answer:

Move it to the right by 3 spaces.

Step-by-step explanation:

10^3 is 1000

On a number line the negative numbers are on the left and the positive numbers are on the right. So since the exponent is a positive 3 we move it to the right by 3 spaces to get 140

4 0
3 years ago
Matt paid $18.64 for 4 pounds of cashews. How much would he pay if he purchased 6 pounds of cashews?
Tanya [424]

Answer:

The correct answer is $27,96.

Step-by-step explanation:

First we must analyze the information we have:

We know that Matt paid $ 18.64 for 4 pounds of cashews.

Now what we want to know is how much I would pay if he bought 6 pounds of cashews.

Having 3 of 4 incognitas the most convenient thing is to do a cross-multiplication:

If he paid 18.64 ----- for 4 pounds

          He paid x ------ for 6 pounds.

x. 4 = 18.64. 6

Now we just solve the equation:

x.4 = 111.84

x = 111.84: 4

x = 27.96

In this way we show that Matt would pay $ 27.96 for 6 pounds of cashews.

6 0
3 years ago
Read 2 more answers
Si yo tengo una canasta llena de mangos y piñas, de las cuales hay 30
skelet666 [1.2K]

Respuesta: Es más probable sacar un mango.

Explicación:

La probabilidad se refiere a la posibilidad de que un evento occura y no otro. En el caso que se describe, la probabilidad de sacar cada fruta puede ser calculada dividiendo el total de cada fruta en el número de frutas totales:

Probabilidad de sacar un mango:

\frac{cantidad de mangos}{cantidad de frutas en la canasta} =  \frac{30}{50}  =0.6

Probabilidad de sacar una piña:

\frac{cantidad de pinas}{cantidad de frutas en la canasta} = \frac{20}{50} = 0.4

De acuerdo a lo anterior la probabilidad de sacar un mango es de 0.6 o de 60% (multiplica la probabilidad por 100 para saber su equivalente en porcentaje), mientras que la probabilidad de sacar un mango es de 0.4 o 40% lo cual es mucho más bajo. Es decir que es más probable sacar un mango.

7 0
3 years ago
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