Depends on how much you write in it or what you attach to it.
You can conserve mobile data usage by understanding how big of an file your uploading or downloading. These terms has been researched with my data calculator:1 Email (text only) 3 KB - 20 KB1 Email (text and photo attachment) 320 KB - 450 KB1 Webpage 145 KB - 3 MB1 Minute of streaming music 500 KB - 1 MBHigh Resolution Photo Upload/Download 1 MB - 3 MB1 minute of streaming video 2 MB - 5 MB1 minute of streaming HD video 4 MB - 7 MB1 Download ( No explanation but determined by size of download)
25 KB (2,161 Words)
Depends on what units you're using. 125 MB = 125,000 kB 125 MiB = 128,000 KiB
To find the Kb for the conjugate base, you can use the relationship Kw = Ka * Kb. Rearrange the equation to solve for Kb: Kb = Kw / Ka. Plugging in the values, you get Kb = (1.0 x 10^-14) / (3.1 x 10^-10) = 3.23 x 10^-5.
Since Kw = Ka * Kb, we can rearrange the equation as Kb = Kw / Ka. Plugging in the values, Kb = (1.0 x 10^-14) / (2.5 x 10^-4) = 4.0 x 10^-11. This is the Kb for the conjugate base of the given acid.
No. Since 1 MB = 1024 KB, the 25 MB are much more. (Multiply by 1024 to convert MB to KB.)
To find the Kb of the conjugate base, you can use the relationship Kw = Ka * Kb. At 25°C, the value of Kw is 1.0 x 10^-14. Given Ka = 3.1 x 10^-10, you can solve for Kb using Kb = Kw / Ka. This gives you Kb = 1.0 x 10^-14 / 3.1 x 10^-10 = 3.23 x 10^-5.
KB = [NH4+].[OH-] divided by [NH3] in case of equilibrium. All concentrations are IN watery (aq) dilution. KB = 1.7*10-5 (at 25 oC)
well it is impossible to tell but i would say about 100kb-200kb -(rickrolld guy) jordpears
181 kb is bigger than 1.41 kb.
1.41 KB is smaller than 181 KB.