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![]() ![]() It would be perfectly legal for a compiler to emit the same code for your line as it would emit for printf("7") or even fputc('7', stdout), if it wants to. What your compiler actually does is required to have the same result as what the standard says, but there's no requirement for any given code snippet that you'll see those exact representations in memory when the program runs. That's all in the standard, but the standard also says that it only describes the behavior of an "abstract machine". Endian-ness relates to the representation of the int in memory, but it's irrelevant to the bitwise operations (including XOR), which are defined in terms of the bits in order of significance, not in terms of their order in memory. ![]() So it allows both little-endian and big-endian representations, and in theory also "middle-endian" representations (I've never seen one of those either, at least not for int). The standard doesn't say whether the least significant bits occupy the first (lowest-addressed) byte, or the last (highest-addressed), or somewhere in the middle. The standard requires at least 16, but past that it permits any number.Īn int usually occupies more than one byte of storage. You might occasionally see 64 or even 16. The number of value+sign bits in an int is 32 in most implementations. When writing a binary number we rarely bother to write 00000000000000000000000000000001 even when we know its type is 32 bits. #NUMBERS IN DIFFERENT LANGUAGES PLUS#So in those terms, you're right: 1 is represented as binary 1, 6 is represented as binary 110, 7 is 111, plus there are initial 0s sufficient to make up the size of the type int. The C language standard also says that the int type has a binary representation, with value bits running from least to most significant in increasing powers of 2, plus a sign bit which isn't relevant here because the numbers are both positive, plus optionally some padding bits (and I've never used a C implementation that had any padding bits in int). The C language standard says that the literals 1 and 6 have type int, and that the XOR operation will therefore be performed using the int type. In addition to in-line numbers, there may be additional systems used for numbered lists.Įxamples include Roman numerals for many locales and Iroha for Japan.There are two slightly different things to consider here. ![]() (See Figure 1 below.)įigure 1: Selecting the preferred number formatting ![]() The user can define preferred number-formatting parameters by making selections from the Numbers tab of the Customize Regional Options property sheet, within the Regional And Language Options property sheet. Thus you should never assume that you can hard-code the percent sign. It can be written several ways: 98%, 98 %, 98 pct, %98. However, notice that Hindi uses a 2-digit grouping, except for the 3-digit grouping for denoting hundreds: 12,34,56,789.00 The placement of the percent sign (%) This refers to the number of digits contained between each separator for all digit groups that appear to the left of the decimal separator.įor example, the 3-digit group is used for most cultures, such as for English (United States): 123,456,789.00. Everything that can be counted will use one of the two systems, but seldom both. Korean regularly uses both a Sino-Korean system and a native Korean system. This 'extra digit' represents the number 10. Note how some scripts have one more digit than Latin or Arabic. Table 1: Digits used for a variety of scripts. (one of the scripts used to write Punjabi) (script used to write Hindi,Marathi, and other languages) Numbers might, of course, be shaped differently from one locale to another.Īlso, numbers in some locales might not correspond directly to there digits (0-9) used in, say, the United States. The shape of the numbers and representation of the number 10 Thus a negative five hundred and twenty-seven could be displayed as: The negative sign can be used at the beginning of the number, but it can also be used at the end of the number.Īlternatively, the number can be displayed with parentheses around it or even in a color such as red. Thus one thousand twenty-five and seven tenths is displayed as 1,025.7 in the United States and 1.025,7 in Germany. In the United States, this character is a period (.). The character used as the decimal separator In Sweden, the thousands separator is a space. Thus one thousand and twenty-five is displayed as 1,025 in the United States and 1.025 in Germany. In the United States, this character is a comma (,). The character used as the thousands separator When dealing with numeric values, there are several major items to pay attention to: Are the values currency (monetary) values?Ĭurrencies require separate treatment from other numeric values. ![]() ![]() If at the time of that appointment the ticket still hasn't been returned, we should set another follow-up appointment. Since we don't know exactly how long engineering will take to review each individual ticket, when we file one we should be scheduling a set time and date to follow back up with you. Regarding the follow-up, I sincerely apologize. You've taken such effort to articulate the issue (very well!) - you can copy and paste what you've posted here! What we need to do now is take a look at the previous tickets filed and re-open and/or escalate them since the issue still isn't resolved. In this situation, my best recommendation would be to reach out to our T-Force team via DM on Twitter or Message on Facebook. It sounds like you've reached out for assistance a ton of times (which again, shouldn't be necessary!). □Īssisting with SMHS or tethering issues over our forum is a little tough, because we don't have a secure platform for account access to review the particulars. Yikes, Any issue that persists over the course of a year and a half is one that's lasted about one year, five months, and three weeks too long. (I was a loyal T-Mobile customer even when their network was not as competitive as it is now.)Ĭan anyone from T-Mobile solve this for me? Before that I was with Verizon for 2 years, but prior to Verizon I was also with T-Mobile a long time. I have had my current account for over 6 years with multiple lines. Multiple T-Mobile support reps have told me that my plan has no throttling of my 10 GB data allotment. So far not a single person who has made me that promise has actually followed up. Usually the support person is very nice and promises to follow up with me. Over the last 1.5 years I have called T-Mobile support many times regarding this issue. For about the first 5-10 minutes, I had good speeds while connected with my laptop, but then the speeds dropped to the 0.2 or 0.3 Mbps range and stayed there the rest of the day. I also tested the mobile HotSpot feature. When I turn on USB tethering, I get a proper connection. #My download speed android#I do not have to use a 3rd party app on my phone (USB tethering is built in to Android on the S8, S8+) and I do not need a 3rd party app on my laptop. My phones are all T-Mobile branded devices. My phones include a Galaxy S8 and a Galaxy S8+ (but the problem has happened with prior phones, as I mentioned). My T-Mobile plan has not changed during this time. Prior to 1.5 years ago, tethering speeds were fantastic. I have been having this issue for the last 1.5 years and in that time I have used several different laptops. The issue is not related to tethering to one particular laptop either. As soon as I USB tether, speeds drop drastically. The issue is not related to my location because data speeds on the phone are adequate. ![]() I have multiple lines with T-Mobile and multiple phones. (On the SpeedTest I just ran I got 25.5 download and 8.11 upload.) However, when I USB tether to my laptop (or desktop), data speeds drop to about 0.3 Mbps download and 0.1 Mbps upload. My data speeds are always around 10 Mbps (or higher) download and 8 Mbps upload directly on my phone. ![]() I am a on a grandfathered Simple Choice NA plan with 10 GB of high speed data. My issue is similar to other threads I have seen here. ![]() |
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