[noble gas]nd1-10ns1-2
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Electronic communication is a new and exciting field which includes computer communication and cell phone use for email and text messaging. Electronic communications have increased speed of communication and have had a negative financial impact on mail delivery service companies.
In general, it was illegal to teach a slave to read/write. For free African-Americans, there were practical barriers such as time and money. Keep in mind that for most of the 19th Century literacy among whites was also relatively low.
[Ne] 3s2 3p5 is the electronic configuration for neutral Chlorine. Its -1 ion, however is: [Ne] 3s2 3p6 or [Ar].
The electronic configuration of copper is [Ar] 3d10 4s1, where [Ar] represents the electron configuration of the noble gas argon. This configuration takes into account the stability gained by having a full d subshell (10 electrons) in the 3d orbital.
Yes it is possible to write the noble gas configuration of all elements, though it is not possible to list all of them here.
just write the electronic configuration
In noble gas notation, you don't have to write the electron configuration up to that noble gas. You simply put the noble gas in brackets [noble gas] and then continue to write the electron configuration from that point. It just makes it shorter and easier to write electron configurations for elements with a lot of electrons.
It is a shorthand form of the electronic configuration. A typical example is Potassium Full electronic configuration 1s2 2s2 2p6 3s2 3p6 4s1 Noble gas notation [Ar] 4s1
The noble gas notation is a notation formed as a result of the electron configuration notation being used in conjunction with noble gases. The noble gas preceding the element in question is written then the electron configuration is continued from that point forward. The notation is shorter to write and makes it easier to identify elements. The noble gas notation starts for elements after helium. For example, the electronic configuration of carbon is 1s2 2s2 2p2, whereas its noble gas notation is [He] 2s2 2p2.
The noble gas notation is a notation formed as a result of the electron configuration notation being used in conjunction with noble gases. The noble gas preceding the element in question is written then the electron configuration is continued from that point forward. The notation is shorter to write and makes it easier to identify elements. The noble gas notation starts for elements after helium. For example, the electronic configuration of carbon is 1s2 2s2 2p2, whereas its noble gas notation is [He] 2s2 2p2.
The electronic configuration for phosphorus is 1s2 2s2 2p6 3s2 3p3. When phosphorus gains 3 electrons to form an ion, it becomes a phosphide ion with a 3- charge. The symbol for the phosphide ion is P3-.
The noble gas notation is a notation formed as a result of the electron configuration notation being used in conjunction with noble gases. The noble gas preceding the element in question is written then the electron configuration is continued from that point onwards. The notation is shorter to write and makes it easier to identify elements. The noble gas notation starts for elements after helium. For example, the electronic configuration of carbon is 1s2 2s2 2p2, whereas its noble gas notation is [He] 2s2 2p2.
The noble gas electron configuration of a sodium ion is the same as that of neon, which is 1s² 2s² 2p⁶. This configuration represents the arrangement of electrons in the nearest noble gas element to sodium (Ne) before it loses one electron to become a sodium ion (Na+).
For example Argon: 18 electrons 2,8,8 Phosphorous: 15 electrons 2,8,5 Nitrogen: 7 electrons 2,5 The first energy level can only hold 2 so it is 2 for everything but hydrogen (1) every other (not the whole truth but good enough for this level of work) holds 8