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v = 1 . 21 × 10 27 kg m/s 1 . 00 × 10 9 kg = 1 . 21 × 10 –18 m/s. alignl { stack { size 12{v= { {1 "." "21"´"10" rSup { size 8{-"27"} } " kg" cdot "m/s"} over {1 "." "00"´"10" rSup { size 8{ +- 9} } " kg"} } } {} #=1 "." "21"´"10" rSup { size 8{-"18"} } " m/s" "." {} } } {}

Discussion

The recoil velocity of the particle of dust is extremely small. As we have noted, however, there are immense numbers of photons in sunlight and other macroscopic sources. In time, collisions and absorption of many photons could cause a significant recoil of the dust, as observed in comet tails.

Test prep for ap courses

Which of the following describes one of the main features of wave-particle duality?

  1. As speed increases, the wave nature of matter becomes more evident.
  2. As momentum decreases, the particle nature of matter becomes more evident.
  3. As energy increases, the wave nature of matter becomes easier to observe.
  4. As mass increases, the wave nature of matter is less easy to observe.

(d)

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Explain why Heisenberg’s uncertainty principle limits the precision with which either momentum or position of a subatomic particle can be known, but becomes less applicable for matter at the macroscopic level.

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Section summary

  • The particle-wave duality refers to the fact that all particles—those with mass and those without mass—have wave characteristics.
  • This is a further connection between mass and energy.

Conceptual questions

In what ways are matter and energy related that were not known before the development of relativity and quantum mechanics?

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Problems&Exercises

Integrated Concepts

The 54.0-eV electron in [link] has a 0.167-nm wavelength. If such electrons are passed through a double slit and have their first maximum at an angle of 25 . size 12{"25" "." 0°} {} , what is the slit separation d size 12{d} {} ?

0.395 nm

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Integrated Concepts

An electron microscope produces electrons with a 2.00-pm wavelength. If these are passed through a 1.00-nm single slit, at what angle will the first diffraction minimum be found?

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Integrated Concepts

A certain heat lamp emits 200 W of mostly IR radiation averaging 1500 nm in wavelength. (a) What is the average photon energy in joules? (b) How many of these photons are required to increase the temperature of a person’s shoulder by 2 . C size 12{2 "." 0°C} {} , assuming the affected mass is 4.0 kg with a specific heat of 0 .83 kcal /kg ºC size 12{0 "." "83"" kcal/kg" cdot °C} {} . Also assume no other significant heat transfer. (c) How long does this take?

(a) 1.3 × 10 19 J size 12{1 "." "33" times "10" rSup { size 8{ - "19"} } " J"} {}

(b) 2 . 1 × 10 23 size 12{2 "." 1 times "10" rSup { size 8{"23"} } } {}

(c) 1 . 4 × 10 2 s size 12{1 "." 4 times "10" rSup { size 8{2} } " s"} {}

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Integrated Concepts

On its high power setting, a microwave oven produces 900 W of 2560 MHz microwaves. (a) How many photons per second is this? (b) How many photons are required to increase the temperature of a 0.500-kg mass of pasta by 45 . C size 12{"45" "." 0°C} {} , assuming a specific heat of 0 . 900 kcal/kg ºC size 12{0 "." "900"" kcal/kg" cdot °C} {} ? Neglect all other heat transfer. (c) How long must the microwave operator wait for their pasta to be ready?

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Integrated Concepts

(a) Calculate the amount of microwave energy in joules needed to raise the temperature of 1.00 kg of soup from 20 . C size 12{"20" "." 0°C} {} to 100 ºC size 12{"100"°C} {} . (b) What is the total momentum of all the microwave photons it takes to do this? (c) Calculate the velocity of a 1.00-kg mass with the same momentum. (d) What is the kinetic energy of this mass?

(a) 3 . 35 × 10 5 J size 12{3 "." "35" times "10" rSup { size 8{5} } " J"} {}

(b) 1 . 12 × 10 –3 kg m/s size 12{1 "." "12" times "10" rSup { size 8{"–3"} } " kg" cdot "m/s"} {}

(c) 1 . 12 × 10 –3 m/s size 12{1 "." "12" times "10" rSup { size 8{"–3"} } " m/s"} {}

(d) 6.23 × 10 –7 J size 12{6 "." "23" times "10" rSup { size 8{"–7"} } " J"} {}

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Integrated Concepts

(a) What is γ size 12{γ} {} for an electron emerging from the Stanford Linear Accelerator with a total energy of 50.0 GeV? (b) Find its momentum. (c) What is the electron’s wavelength?

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Questions & Answers

calculate molarity of NaOH solution when 25.0ml of NaOH titrated with 27.2ml of 0.2m H2SO4
Gasin Reply
what's Thermochemistry
rhoda Reply
the study of the heat energy which is associated with chemical reactions
Kaddija
How was CH4 and o2 was able to produce (Co2)and (H2o
Edafe Reply
explain please
Victory
First twenty elements with their valences
Martine Reply
what is chemistry
asue Reply
what is atom
asue
what is the best way to define periodic table for jamb
Damilola Reply
what is the change of matter from one state to another
Elijah Reply
what is isolation of organic compounds
IKyernum Reply
what is atomic radius
ThankGod Reply
Read Chapter 6, section 5
Dr
Read Chapter 6, section 5
Kareem
Atomic radius is the radius of the atom and is also called the orbital radius
Kareem
atomic radius is the distance between the nucleus of an atom and its valence shell
Amos
Read Chapter 6, section 5
paulino
Bohr's model of the theory atom
Ayom Reply
is there a question?
Dr
when a gas is compressed why it becomes hot?
ATOMIC
It has no oxygen then
Goldyei
read the chapter on thermochemistry...the sections on "PV" work and the First Law of Thermodynamics should help..
Dr
Which element react with water
Mukthar Reply
Mgo
Ibeh
an increase in the pressure of a gas results in the decrease of its
Valentina Reply
definition of the periodic table
Cosmos Reply
What is the lkenes
Da Reply
what were atoms composed of?
Moses Reply
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Source:  OpenStax, College physics for ap® courses. OpenStax CNX. Nov 04, 2016 Download for free at https://legacy.cnx.org/content/col11844/1.14
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