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Bad White [126]
4 years ago
10

Calculate the energy of one photon of yellow light that has a wavelength of 589 nm

Chemistry
1 answer:
kolbaska11 [484]4 years ago
6 0
The answer should be 3.37 x 10^-19
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Why did they focus on higher alcohols to add to or substitute gasoline instead of ethanol? Check all answers that apply. Select
Varvara68 [4.7K]

Answer:

Because of statements (a), (c) and (d).

Explanation:

Let's evaluate each statement to know why they focus on higher alcohols instead of ethanol:

(a) It is easier to produce higher alcohols in microbes than it is to produce ethanol<u>.</u> This is true<u> since ethanol is the major biofuel in the world because it can be easily produced by fermentation technology developed a long time ago. Recently, higher alcohols are produced from microorganisms that are used as microbial cell factories.</u>                    

(b) Higher alcohols have a higher hygroscopicity than ethanol. This is false since ethanol is more hygroscopic than higher alcohols.

(c) Higher alcohols have a lower vapor pressure than ethanol. This is true, ethanol has a higher vapor pressure than higher alcohols. The vapor pressure is important since it can affect the proper cold starting of the engine.  

(d) Higher alcohols have a higher energy density than ethanol. This is true since the production of higher alcohols as biofuels is more desirable than the ethanol because higher alcohols have a high energy density and other more advantages than the use of ethanol.        

Therefore the answer of why did they focus on higher alcohols to add to or substitute gasoline instead of ethanol is because of the statements  (a), (c) and (d).

I hope it helps you!

5 0
3 years ago
You mix 125 mL of 0.170 M with 50.0 mL of 0.425 M in a coffee-cup calorimeter, and the temperature of both solutions rises from
kondaur [170]

Here is the correct question

You mix 125 mL of 0.170 M CsOH with 50.0 mL of 0.425 M HF in a coffee-cup calorimeter, and the temperature of both solutions rises from 20.20 °C before mixing to 22.17 °C after the reaction. What is the enthalpy of reaction per mole of ? Assume the densities of the solutions are all 1.00 g/mL, and the specific heat capacities of the solutions are 4.2 J/g · K. Enthalpy of reaction = kJ/mol

Answer:

75.059 kJ/mol

Explanation:

The formula for calculating density  is:

density = \frac{mass}{volume}\\

Making mass the subject of the formula; we have :

mass = density × volume

which can be rewritten as:

mass of the solution =  density × volume of the solution

= 1.00 g/mL × (125+ 50 ) mL

= 175 g

Specific heat capacity = 4.2 J/g.K

∴ the energy absorbed is = mcΔT

= 175 × 4.2 × (22.17 - 20.00) ° C

= 1594.95 J

= 1.595 J

number of moles of CsOH =  \frac{125}{1000} *100

= 0.2125 mole

Therefore; the enthalpy of the reaction = \frac{Energy \ absorbed }{number \ of \ moles}

= \frac{1.595}{0.02125}

= 75.059 kJ/mol

5 0
3 years ago
Which of the following statements is true?
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It's A, t<span>The figure is a molecule and an element.</span>
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Calcium reacts with water. This reaction is represented by the balanced equation below. The aqueous product of this reaction can
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The aqueous product conducts electricity while the solid does not. Ionic solids do not conduct electricity, but ions dissolved in solution do. The chemical name of the base is calcium hydroxide. Increasing the temperature of the system would increase the rate of the reaction.
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Which is not a characteristic of a plant’s vascular tissue?
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Answer:

It does not combine egg and sperm cells in plant.

4 0
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