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Milliman AccuRate Fleet is a usage-based insurance score designed to enable more accurate pricing of fleet exposure and driving behavior risk. Developed by Milliman actuaries and data scientists, AccuRate Fleet is based on over a billion miles of commercial auto driving data and thousands of crashes.
Use our extensive commercial telematics data to get accurate pricing that is approved by regulators. AccuRate Fleet can enable more refined fleet pricing and risk selection, as well as encourage safer driving behaviors that are most directly relevant to commercial fleets.
Today, we are helping organizations take on some of the world's most critical and complex issues, including retirement funding and healthcare financing, risk management and regulatory compliance, data analytics and business transformation.
I found after a little research online that it seems to be a common problem with many differing CAD software and printing, and there were many differing suggestions and ideas, but very little in the way of conclusive solutions.
The thing is that most printers rely on feeding paper through on different systems of rollers, and that there is always some paper slippage plus the calibration of the roller outer diameter to the linear paper feed. So, while in general they are reasonably accurate and repeatable in the width (carriage movement) direction, they are not nearly as accurate in the length (paper feed) direction.
This is why systems which need accurate registration of printed material and, say, cutouts made afterwards, rely on printing, then scanning the print back in (reference marks) and then scaling it internally as necessary before cutting.
In years past, I used to plot out full scale framing for boat building onto Mylar with ink pens on a large format HP plotter. EXPENSIVE! YIKES! but did save the builder from having to loft from numerical offsets. Now, I just email all the drawings and they can be dealt with full size on their plotter!
Even flat bed scanners except for very expensive ones no doubt, cant do 100% which is even more of a pain. Had an Epson A3 at work, had to scale down by different amounts the resulting scan, my A4 Epson is no better.
I realized after posting that you may have been talking about elevation. There are a specific number of terrain values in each import. If you were to do an 18X import of the center of the area, then add imagery to get the surrounding 18X areas, that will give you more detailed terrain.
Actually I think it is satellite data. Our National Survey has made its aerial Lidar data public and compared to that the Digital Globe and before that, Google data is vastly inaccurate. Even the National Survey data is not accurate enough to place building levels, with points about 2 m apart. They are actually doing a new scan of the whole country at a resolution of something like 3 points/m. That would probably be quite usable.
I have spent all afternoon looking for a way to even check altitude at a point. The results were at best poor. I did find one discussion on the data used to create the height maps and it also said that the data is about to be updated to be more accurate. Trimble should put a warning on it so people are aware of the issue.
New with PlaceMaker version 3: import high quality detailed terrain models for almost any location on the globe. This exciting feature allows for great accuracy with some locations boasting 1m or even better terrain data. With a simple ability to...
Accurate 4350 is a short cut, single-base, extruded rifle powder in the extremely popular 4350 burn range. A highly versatile powder, 4350 can be used in a wide range of cartridges from the popular 243 Win to the 338 Win Mag with excellent results.
To maximize performance, the ballistics experts at Hodgdon Powder Co., Inc. have developed a comprehensive Reloading Guide to provide handloaders with current data for Accurate Powders. To view the reloading information in PDF format, click the boxes or links below.
For your reference, we offer a comprehensive list of Relative Burn Rates* for all gun powders. This list is sorted from the powders with the fastest burn rates to those with the slowest burn rates. To view this list in a PDF format, click the button below.
The GOLDEN RULE of reloading is to always to begin at the recommended START load, which is between -10% below the MAXIMUM load for most Rifle calibers and up to 15% below for certain handgun calibers.
Due to a myriad of variables that can exist and which is totally outside the control of the institution which generates the reloading data, it is imperative to consider the safety aspect and begin at a properly reduced low energy level.
For heavier 1?oz loads the N100 NF will not be as flexible and versatile as the old N100. The best performance with the smaller volume taper cases such as WAA and Remington STS will be 1150 fps with Pressures of between 11000 Psi to 11500 Psi.
There was am initial caution/warning re handgun calibers however, that was just a prelim measure because the handgun data will be different. We are in process of developing loads for this powder in handgun calibers.
Whenever, it is possible to measure a parameter accurately, it is a huge advantage to know/conclude what is happening. It will immediately tell you whether the combination is in-line with the published reloading data or not. The availability of affordable and accurate chronometers has put this measuring ability within reach of most reloaders today.
However, we test at -40F and +125F and the deviation in most cases are ca 3% to 5% at these extreme levels. Therefore most shooters do not notice much difference under normal practical hunting conditions.
It is also very important that when a comparison is made, that all conditions re weapon i.e. components primer, case, bullet and the velocity are equal, and preferably done at the same time on the same day.
This means that some level of un-burnt powder will be present, constituting the remainder of some of the powder granules. This cannot be improved with primers or crimp etc, the only way to eliminate this, is an increase in chamber-pressure.
Since the vast majority of this powder consists of just NC Nitro Cellulose, and does not contain other ingredients which will seal the powder composition, it will be more porous, especially some of the extruded flake/disc powders aimed at shotgun or handgun applications.
Even double base ballpowders, such as in the case of extremely fast burning ballpowders for Shotgun/handgun applications, which can also be sometimes rolled/flattened, will also tend to cling to the sides of synthetic (static) containers/hoppers.(see question below re static elecricity)
Caution: This powder is extremely fine and will be difficult to get of skin so we strongly suggest using surgical gloves when handling the graphite. Also take care not to spill it on clothes because will be hard to clean. Hard to reach places can be treated with cotton swabs dipped in the graphite powder.
A third will be to earth/ground the loading equipment. Also be aware of the Relative Humidity of the loading area. The ideal is to keep the RH between 50 and 70%. If the RH goes very low the static will become more pronounced and it might be good to invest in a humidifier. The RH must be monitored with an accurate instruments or a wet and dry ball thermometer unit (which is the most accurate).
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Quantitative measurement of brain size, shape, and temporal change (for example, in order to estimate atrophy) is increasingly important in biomedical image analysis applications. New methods of structural analysis attempt to improve robustness, accuracy, and extent of automation. A fully automated method of longitudinal (temporal change) analysis, SIENA, was presented previously. In this paper, improvements to this method are described, and also an extension of SIENA to a new method for cross-sectional (single time point) analysis. The methods are fully automated, robust, and accurate: 0.15% brain volume change error (longitudinal): 0.5-1% brain volume accuracy for single-time point (cross-sectional). A particular advantage is the relative insensitivity to differences in scanning parameters. The methods provide easy manual review of their output by the automatic production of summary images which show the results of the brain extraction, registration, tissue segmentation, and final atrophy estimation.
I know HubSpot automativally populates the company headcount in the "Number of employees" field whenever a new company is added, but the number retreived from the database is vastly different from the actual headcount on LinkedIn, and really can't be relied on.
Are there any best practices to deal with this descripancy? Because we're using this field for lead scoring and need it to be accurate. Alternatively, is there any integration that can overwrite this default HubSpot number?
Hey @VIyengar this is the joy of purchasing information. There's no "real" number here. This is entirely reliant upon the data source. Linkedin headcount for example counts based on how many people on linkedin have that company set as their current employer on linkedin. So, if I work for a company and don't have a linkedin account, or even, if I have a linkedin account and haven't linked my job description to the correct company I won't be counted towards that.
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