A carbon dioxide laser emits a harmonic electromagnetic wave that travels in space in the negative x direction. The wavelength has a value of 541 nm and has an energy per unit time and average unit area of 2.8 W/m2. The amplitude of the electric field
Q: The filament in a clear incandescent light bulb radiates visible light at a power of P. Model the…
A: we have to tell about intensity of light and total amount of electromagnetic energy.
Q: Part A What is the electric-field amplitude at a distance of 20.0 cm from the source? Express your…
A: Given data: r1=10 mr2=20 cmE1=3.2 N/C Need to determine the electric field amplitude at a distance…
Q: Find the intensity of the electromagnetic wave described in each case. (a) an electromagnetic wave…
A:
Q: An AM radio transmitter broadcasts 46.0 kW of power uniformly in all directions. Assuming all of the…
A:
Q: What are the wavelengths of electromagnetic wave and sound wave of same frequency 1.9-kHz? Speed of…
A: Part(a):Frequency is Speed of electromagnetic wave is Speed of sound wave is Note:Find:Wavelength of…
Q: A community plans to build a facility to convert solar radiation to electrical power. The community…
A: Given, Required power = 2.6 MW Efficiency = 30% Intensity of sunlight = 1200W/m2 We need to…
Q: The filament in a clear incandescent light bulb radiates visible light at a power of P. Model the…
A:
Q: The magnetic field of a wave propagating through a certain nonmagnetic material in the positive y…
A: Amplitude (A) = 30 mAmFrequency (f) = 1082π Hz wavelength (λ) = 12.6 m
Q: Electromagnetic waves can propagate through a vacuum. The speed of electromagnetic waves in a medium…
A: Electromagnetic waves are waves produced by the acceleration of an electric charge or by the…
Q: Lasers can be constructed that produce an extremely high intensity electromagnetic wave for a brief…
A: Given Data:The electric field strength is, E0=1.11×1011 V/mThe time required for the propagation is,…
Q: A light source radiates a sinusoidal electromagnetic wave uniformly in all directions. This wave…
A: Given data: The pressure exerted by the wave is p. The distance is R. Express the relation for the…
Q: Suppose the magnetic field of an electromagnetic wave is given by B = (3.9 x 10-10) sin(kx – wt) T.…
A: Given that,B=3.9×10-10 sinkx-wtB=B0 sinkx-wtso,B0=3.9×10-10 T
Q: A plane electromagnetic sinusoidal wave c frequency 26.4 MHz travels in free space. The speed of…
A: We are given frequency of electromagnetic wave. We are also given the speed of that wave which is…
Q: Suppose the magnetic field of an electromagnetic wave is given by B = (2.9 x 10-10) sin(kx - wt) T…
A: GivenB0 = 2.9 ×10-10 T
Q: Lasers can be constructed that produce an extremely high intensity electromagnetic wave for a brief…
A: Answer:- Given Maximum electric field strength (Eo) = 1.48 × 1011 v/m Time (t) = 1…
Q: Write equations for both the electric and magnetic fields for an electromagnetic wave in the red…
A:
Q: Find the intensity of the electromagnetic wave described in each case. (a) an electromagnetic wave…
A:
Q: At some instant and location, the electric field associated with an electromagnetic wave in vacuum…
A: S=12μ∘EB=power per unit area per unit time
Q: Multiple-Concept Example 5 discusses the principles used in this problem. A neodymium glass laser…
A: We will calculate the average poynting vector first and then calculate the average power
Q: If the intensity of sunlight at the Earth's surface under a fairly clear sky is 1 444 W/m2, how much…
A: Write the expression for the electromagnetic energy per cubic meter, E/A. E/A=Ic Here, I is the…
Q: The amplitude of the electric field of an electromagnetic wave traveling in a vacuum is measured to…
A: Given Magnitude of electric field E = 3.8 × 102 V/m To find Amplitude of the magnetic field in…
Q: A space probe which is a distance of 2.6×1010 mm from a star measures the total intensity of…
A: Distance=2.6×10^10mm Intensity=5300W/m²
Q: Write equations for both the electric and magnetic fields for an electromagnetic wave in the red…
A:
Q: A 16.0-mW helium–neon laser emits a beam of circular cross section with a diameter of 2.95 mm. Find…
A:
Q: a temperature of 210°C has a specific entropy of 7.1167 kJ/kg•K. Determine the pressure, internal…
A: Given: Temperature (T)=210∘C The specific entropy =7.1167 KJ/kg.K
Q: Write equations for both the electric and magnetic fields for an electromagnetic wave in the red…
A:
Q: What is the maximum electric field strength (in kV/m) in an electromagnetic wave that has a maximum…
A: Given that maximum magnetic field strength then we have to determine the value of maximum electric…
Q: A plane electromagnetic wave propagates in a vacuum in the -y-direction. The wave has a wavelength…
A: Wavelength=12 m amplitude of electric field = 0.60V/m angular frequency =2.1×10-9s-1
Q: What is the electric-field amplitude at a distance of 20.0 cm from the source? Eypross vO
A: Given that, a source of sinusoidal electromagnetic waves radiates uniformly in all directions. At a…
A carbon dioxide laser emits a harmonic
![](/static/compass_v2/shared-icons/check-mark.png)
Step by step
Solved in 2 steps with 2 images
![Blurred answer](/static/compass_v2/solution-images/blurred-answer.jpg)
- Sunlight, with an intensity of 643 W/m², strikes a flat collecting surface perpendicularly and is totally absorbed. The area of the surface is 8.55 m². What is the force F in micronewtons that acts on the surface due to the sunlight? F = μεLasers can be constructed that produce an extremely high intensity electromagnetic wave for a brief time. These devices are called pulsed lasers and can be used to ignite nuclear fusion, for example. Consider a pulsed laser that produces an electromagnetic wave with a maximum electric field strength of 1.25×10^11 V/m for a duration of 1.00 ns. What energy does it deliver on a 1.00 mm^2 area? Give your answer in units of kilojoules.Electromagnetic radiation from the sun reaches the earth at a rate 1370W/m^2. The radius of the sun is 6.96x10^8m and the distance from the center of the sun to earth is 1.5x10^11. Assume solar radiation reaches sun as single wave. A) what is the electric field amplitude of solar radiation when it reaches earth ? b)what is total energy radiated by sun in 2.5 seconds give answer in J c) if we assume sun emits like a black oft with emissivity e=1 calculate the temperature on the surface of Sun in Celsius Please show work
- A 14.0-mW helium-neon laser emits a beam of circular cross section with a diameter of 2.85 mm. (a) Find the maximum electric field in the beam. kN/C (b) What total energy is contained in a 1.00-m length of the beam? pJ (c) Find the momentum carried by a 1.00-m length of the beam. kg. m/sWrite equations for both the electric and magnetic fields for an electromagnetic wave in the red part of the visible spectrum that has a wavelength of 709 nm and a peak electric field magnitude of 2.6 V/m. (Use the following as necessary: t and x. Assume that E is in volts per meter, B is in teslas, t is in seconds, and x is in meters. Do not include units in your answer. Assume that E = 0 and B = 0 when x = 0 and t = 0.) E(x, t) B(x, t) = =The intensity of solar radiation that falls on a detector on Earth is 1.00 kW/m². The detector is a square that measures 6.11 m on a side and the normal to its surface makes an angle of 30.0° with respect to the Sun's radiation. How long will it take for the detector to measure 436 kJ of energy? S
- An electromagnetic wave with frequency 65.0 Hz travels in an insulating magnetic material that has dielectric constant 3.64 and relative permeability 5.18 at this frequency. The electric field has amplitude 7.20 × 10-³ V/m. Part A What is the speed of propagation of the wave? 17 ΑΣΦ V= Submit Request Answer Part B What is the wavelength of the wave? ΠΙ ΑΣΦ X = Submit Request Answer ? ? m/s mSuppose the magnetic field of an electromagnetic wave is given by B = (2.7 x 10-10) sin(kx - wt) T. (a) What is the average energy density of the magnetic field of this wave? J/m³ (b) What is the average energy density of the electric field? J/m³A linearly polarized sinusoidal electromagnetic wave moving in the positive x direction has a wavelength of 7.60 mm. The magnetic field of the wave oscillates in the xz plane and has an amplitude of 6.90 µT. The magnitude of the electric field vector for this wave can be written as E = Emax sin(kx – øt). What are the following? (a) the value of Emax 2070 V/m (b) the wave number k 826.73 m-1 (c) the angular frequency w 2.48e11 rad/s (d) the plane in which the electric field oscillates the xz plane the yz plane the xy plane (e) the average Poynting vector (Express your answer in vector form.) Sav 11.37 · 10°i X W/m² (f) the radiation pressure exerted by this wave on a perfectly reflecting lightweight solar sail 3.79e-5 Pa (g) the acceleration of the solar sail if its dimensions are 5.00 m x 8.00 m and its mass is 40.0 g 0.038 m/s²
- What is the maximum value of the electric field in an electromagnetic wave whose maximum intensity is 7.55 W>m2?From a local TV station transmitter, a sinusoidal, plane electromagnetic wave is normally incident on an open window that has an area of 0.510 m2. The wave travels to the right in the positive x-direction at the speed of light c and the window is thus perpendicular to the x-axis. See the schematic. Suppose the three electric field components have wave functions: EX = 0 EY = Emsin(kx-ωt) EZ = 0 See the axes below. At the moment shown the electric field - indicated by the vertically upward arrow - points in the positive y direction. Assume the field magnitude Em = 0.01000 V/m. The Erms (root mean square) of the electric field would thus be Erms = 0.00707 V/m. (a) At the moment shown above, in what direction does the magnetic field point? Indicate this direction by drawing a symbol near the z-axis. Compute the numerical value of amplitude Bm of the magnetic field component pointing in the direction you found. (b) Write the wave function for the magnetic field component you referenced in…