Answer: A valid Lewis dot structure shows all the non-zero formal charges, satisfies the octet rule for each atom, and contains the correct number of atoms and valence electrons
Explanation:
Answer:
shows all non-zero formal charges, satisfies the octet rule for each atom, and contains the correct number of atoms and valence electrons.
Explanation:
repeated reference is made in ewr and the nec® to limit the length of ""fixture whips"" to 6 feet. what is the significance of this 6-foot limitation?
A “fixture whips” longer than 6 feet are required to be supported and grounded per the NEC ®for that wiring method.
What is Length ?
Length is a term used to describe the distance between two points on an object or the dimension of an object along a particular axis. Length is usually measured in units of distance, such as meters, centimeters, inches, or feet .
In physics, length is an important concept used to describe the size of objects, the distance between two points, or the dimensions of a space. In engineering and construction, length is used to design and build structures, such as bridges and buildings, to ensure they are safe and fit for their intended purpose.
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This problem is designed to illustrate the superposition principle and the concepts of modulated and modulating functions in a wave packet. Consider two wave functions ψ1(y, t) = 5y cos 7t and ψ2(y, t) = −5y cos 9t, where y and t are in meters and seconds, respectively. Show that their superposition generates a wave packet. Plot it and identify the modulated and modulating functions.
The modulated function is A(y) = 5y and the modulating function is ω = -2.
The superposition of the two given wave functions is given by:
ψ(y, t) = ψ1(y, t) + ψ2(y, t)
= (5y cos 7t) +(- 5y cos 9t)
The wave packet generated by the superposition of the two wave functions is given by:
ψ(y, t) = A(y)cosωt
= 5y(cos7t - cos9t)
Where A(y) = 5y is the modulated function and ω = (7 - 9) = -2 is the modulating function.
The wave packet is as shown:Wave packet plot
The wave packet generated by the superposition of the two given wave functions.
Therefore,The modulated function is A(y) = 5y and the modulating function is ω = -2.
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earth carries a net charge of about -5.0× 105 c . how many more electrons are there than protons on earth?
The net charge of the Earth is [tex]-5.0 x 10^5[/tex] coulombs, which means that the Earth has a net negative charge. This net negative charge is due to the presence of more electrons than protons on the Earth.
A coulomb is the unit of electric charge and is used to measure the amount of electric charge in an object. The charge of an electron is [tex]-1.6 x 10^-19[/tex]coulombs, and the charge of a proton is[tex]+1.6 x 10^-19[/tex]coulombs. These charges are equal in magnitude but opposite in sign, meaning that the charge of an electron is the exact opposite of the charge of a proton.
Since the Earth has a net negative charge, this means that there are more electrons than protons on the Earth. To calculate the exact number of extra electrons, we would need to know the magnitudes of the individual charges of electrons and protons. However, as a rough estimate, we can assume that the charges of electrons and protons are equal in magnitude and opposite in sign, so the number of extra electrons would be approximately equal to the net charge of Earth divided by the charge of a single electron.
Therefore, the estimated number of extra electrons is:
[tex](-5.0 x 10^5) / (-1.6 x 10^-19) = 3.125 x 10^24[/tex]
So, there are approximately [tex]3.125 x 10^24[/tex] more electrons than protons on Earth.
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An object has a kinetic energy of 12750 J and a mass of 268 kg, how fast is the object
moving?
Put the values into kinetic energy multiplication now. The V-shape has a value of 25 when divided by 500 jewels. 25, or 5 squared. Now, 1000 divided by 25 results in a weight of 40 kg. Therefore, the item will have a 40 kg mass.
A 478 kilogram object moving at a 15 m/s speed has how much kinetic energy?53775 joule We calculate the kinetic energy to be 53775 joules. This is the necessary response.
What is kinetic energy's mathematical equation?Kinetic energy has the following formula: K.E. = 1/2 m v2, where m is the object's mass and v is its square velocity. The kinetic energy is measured in kilograms-meters squared per second squared if the mass is measured in kilograms and the velocity is measured in meters per second.
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a sine wave has a frequency of 50 khz. how many cycles does it complete in 10ms
The sine wave completes 500 cycles in 10 ms.
To calculate the number of cycles completed by a sine wave, we need to know its frequency and the time interval.
Given:
Frequency = 50 kHz
Time interval = 10 ms
First, we need to convert the frequency to cycles per second (Hz) since the time interval is given in seconds. We know that 1 kHz = 1000 Hz.
Frequency = 50 kHz
Frequency = 50,000 Hz
Next, we can calculate the number of cycles using the formula:
Number of cycles = Frequency x Time interval
Number of cycles = 50,000 Hz x 10 ms
Number of cycles = 500 cycles
Therefore, the sine wave completes 500 cycles in 10 ms.
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