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Shtirlitz [24]
3 years ago
12

10 The graph below compares the density, in grams per cubic centimeter (g/cm'), of

Chemistry
1 answer:
ahrayia [7]3 years ago
5 0

Answer: the awnser is A

Explanation:

Edge 2020

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A solution consists of a solute and a solvent mixed together. for the solution in model 1 identify and provide the symbol for th
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Answer is: solute is sugar and solvent is water.
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Solvent is </span>substance that dissolves a solute, solvent is usually a liquid.
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3 years ago
Camphor, a saturated monoketone from the Asian camphor tree, is used among other things as a moth repellent and as a constituent
Amiraneli [1.4K]

Answer:

its molecular formula must be C10H16O with 2 rings.

Explanation:

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Since camphor is a single ketone, and M+/MC = 12 ~~ 8, its molecular formula must be C10H16O, accordingly, the number of rings = (10 * 2-16)/2 = 2.

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What would be the mass of 1.98×10^28 molecules of H2O
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3 years ago
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An unknown mass of aluminum requires 6290 joules to raise
Alex Ar [27]

Answer:

124.579 g

Explanation:

Amount of heat required to change the temperature of body is given by the equation given below

Q = m* c * ΔT ____________________equation A

where Q is the total heat energy required by the any object

c is the specific heat capacity of the body J/gK

ΔT is the difference of final temperature of the object and initial temperature of the object

______________________________________

Given Q = 6290 joules

c = 0.900 J/gK

To calculate the temperature in kelvin from Celsius

we can use the formula

K = C + 273

initial temperature  = 23.9°C

initial temperature on kelvin scale =  23.9° + 273 = 296.9

Final temperature  = 80°C

initial temperature on kelvin scale =  80° + 273 = 353

ΔT(temperature difference) = 353 - 296.9 = 56.1

___________________________________________

let the mass of of the  aluminum be m g

substituting the value of Q , c, ΔT in equation A we have

Q = m* c * ΔT

=> 6290 = m * 0.900 * 56.1

=> m = 6290/(0.900 * 56.1 )

=> m = 6290/50.49

=> m = 124.579 g

The mass of the  aluminum is 124.579 g

8 0
3 years ago
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