Question
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  1. Calculate the energy, in kilojoules, of one mole of photons of yellow laser light of wavelength 570
    nm .
    A)
    B)
    C)
    D)
    E)

Ask by Luna Chandler. in the United States
Mar 22,2025

Upstudy AI Solution

Tutor-Verified Answer

Answer

The energy of one mole of photons is approximately kJ, so the correct answer is C) kJ.

Solution

To calculate the energy of one mole of photons of yellow laser light of wavelength 570 nm, we can use the formula for the energy of a photon:
where:
  • is the energy of the photon,
  • is Planck’s constant ( J s),
  • is the speed of light ( m/s),
  • is the wavelength of the light.
Given that the wavelength of the yellow laser light is 570 nm, we can substitute the values into the formula to find the energy of one photon.
Let’s calculate the energy of one photon first, and then we can find the energy of one mole of photons.
Calculate the value by following steps:
  • step0: Calculate:
  • step1: Remove the parentheses:
  • step2: Multiply the numbers:
  • step3: Subtract the numbers:
  • step4: Multiply the numbers:
  • step5: Multiply the numbers:
  • step6: Subtract the numbers:
  • step7: Reduce the fraction:

    The energy of one photon of yellow laser light of wavelength 570 nm is approximately J.
To find the energy of one mole of photons, we need to multiply the energy of one photon by Avogadro’s number ( ).
Let’s calculate the energy of one mole of photons.
Calculate the value by following steps:
  • step0: Calculate:
  • step1: Multiply the terms:
  • step2: Multiply the terms:
  • step3: Add the numbers:
  • step4: Convert the expressions:
  • step5: Multiply the numbers:

    The energy of one mole of photons of yellow laser light of wavelength 570 nm is approximately J.
To convert this energy to kilojoules, we divide by 1000.
Let’s calculate the energy in kilojoules.
Calculate the value by following steps:
  • step0: Calculate:
  • step1: Reduce the fraction:

    The energy of one mole of photons of yellow laser light of wavelength 570 nm is approximately kJ.
Therefore, the correct answer is C) kJ.

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The Deep Dive

To calculate the energy of one mole of photons of yellow laser light, we can use the formula for the energy of a single photon, , where is Planck’s constant ( ), is the speed of light ( ), and is the wavelength in meters.
First, convert the wavelength from nanometers to meters: . Plug in the values:
Calculating this gives the energy per photon. To find the energy for one mole of photons, multiply the energy of one photon by Avogadro’s number ( ):
After performing these calculations, you’ll find the energy in kilojoules per mole. The correct value corresponds to kJ (Option B).
Here’s a neat tidbit: Did you know that the yellow light from a laser is often used in laser light shows? The reason it stands out beautifully is due to its longer wavelength, which makes it more visible to the human eye compared to other colors like blue or violet!
And if you’re curious about energy and light, consider diving deeper into the field of quantum mechanics. Understanding how energy quantization influences everything from lasers to complex chemical reactions can be incredibly mind-bending yet rewarding!

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