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Ray Of Light [21]
4 years ago
9

A box of cereal contains 12.5 ounces. It costs $4.50. What is the cost to the nearest cent of the cereal per ounce? Please help

me.
Mathematics
1 answer:
dimaraw [331]4 years ago
5 0

Answer:

0.36 cents per ounce

Step-by-step explanation:

I divided 4.50 by 12.5 and got 0.36 and then round that up

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A cruise ship maintains a speed of 10 knots ​(nautical miles per​ hour) sailing from San Juan to​ Barbados, a distance of 600 na
Viefleur [7K]

Answer:

a) θ=151.84°, b) t=53.73hr

Step-by-step explanation:

a)

Ok, so the very first thing we need to do when solving this problem is to draw a diagram of what the situation looks like. (See attached picture). This will help us visualize the problem better and determine what to do in order to solve it.

Notice that the ship will take a triangular path, so we can analyze it as if we were talking about a triangle. So the very first thing we need to do is find the length of side b.

We know the ship is traveling at 10knots=10 mi/hr, so we can use the following ratio to find the distance:

V=\frac{distance}{time}

when solving for the distance we get that:

distance=Velocity*time

since the ship will travel for 7 hours in that direction, we get that the distance it travels is:

b=10mi/hr*7hr=70mi

Once we found that distance, we can calculate the distance for side c of the triangle by using the law of cosines

c^{2}=a^{2}+b^{2}-2ab cos \gamma

which can be solved for c, so we get:

c=\sqrt{a^{2}+b^{2}-2ab cos \gamma}

since we know all those values, we can directly plug them in, so we get:

c=\sqrt{(600mi)^{2}+(70mi)^{2}-2(600mi)(70mi) cos (25^{0})}

which yields:

c=537.37mi

Once we know the length of c, we can use the law of sines to find angle α.

Like this:

\frac{sin \alpha}{600}=\frac{sin 25^{o}}{537.37}

which we can solve for α:

sin \alpha = 600 \frac{sin 25^{o}}{537.37}

so

\alpha=sin^{-1}(600\frac{sin 25^{o}}{537.37})

so we get the angle to be:

α=28.16°

now, since we are interested in finding the angle it has to turn from its origional course, we can now subtract that angle from 180° to get.

θ=180°-28.16°=151.84°

b) in order to find the time it takes to reach Barbados after the final turn is made we just need to use the velocity ratio again, but this time solve for t:

V=\frac{c}{t}

when solving for t we get:

t=\frac{c}{V}

so when substituting the values we get:

t=\frac{537.37mi}{10mi/hr}

so

t=53.73 hr

5 0
4 years ago
In 1 year, how many more hours of sleep does a giant armadillo get than a platypus?
kumpel [21]

If the given variables are 127 hours of sleep per week for a Giant Armadillo, and 98 hours of sleep per week for a Platypus, to determine which animal gets the most sleep, first multiply the total hours of sleep of each animal per week to the total number of weeks In a year, which is 52. Once you get the answers, which are 6,604 hours of sleep in a year for the Giant Armadillo and 5,096 hours of sleep in a year for a Platypus. You subtract 6,604 and 5,096 together to get the answer, which is 1,508. Therefore we conclude that that the Giant Armadillo has 1,508 hours more hours of sleep than a Platypus in a Year.

6 0
3 years ago
Help!
Lesechka [4]
Ok . since they are similar you can use similarity factor
4 0
3 years ago
Read 2 more answers
PLS HELP :(
faust18 [17]

Answer: 47.1

Step-by-step explanation:

1/3πr^2h

=1/3×π×32×5

=15π

= 47.123889803847 feet3

4 0
3 years ago
Read 2 more answers
3 orange picks for every 2 green. if there are 25 picks in all, how many picks are orange?
Marta_Voda [28]
3+2=5
25÷5=5
5×3=15
There are 15 Orange picks.
8 0
3 years ago
Read 2 more answers
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