When you have a closer look at the product, identify what you know about its parts and materials. For example, a coffee machine needs ground coffee, and a car needs fuel. Depending on what you select, you may also think about any additional input necessary in the use of the product. Make a small drawing of the product in the product bubble. Find inspiration by looking at some of the results of the Circular Design Brief. Identify on the worksheet what you already know or can identify about the materials and chemicals used in the product. Explore how material health issues may be addressed in the design phaseĪpproximate time to complete: 1 - 2.5 hours.Understand the impacts of materials choices at these product life cycle stages. ![]() Learn how to map out the materials journey, identifying areas in which material health may be an influencing factor in safety and circularity.This advanced method is part of the Safe & Circular Material Choices series. Through this mapping exercise, you will explore which areas you can affect the most as a designer. ![]() There are multiple approaches that can be taken to ensure safer material choices. Developing an awareness of these risks is the first step towards designing in a different way. The chemicals and materials used throughout the product life cycle matter because they can pose risks to humans and the environment. To effectively design a product for ongoing cycles, it’s important to consider the impact of material choices across each of these life cycle stages. When choosing safe materials, it is essential to explore the implications of material choices at each phase of its life cycle: during production, the use phase, the after-use phase, and when bringing materials back into the system again.
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![]() ![]() The display of your multimeter will show reading as soon as you connect the wires.Ĭompare this reading with the recommended reading to determine whether the evaporator fan motor is bad or not. For those who don’t know, a multimeter is a device used to check the electrical properties of a component.Ĭonnect the wires of your motor to the probes of the multimeter and set the multimeter to ohms to check the wires for resistance. If you do not hear any noise, consider testing the evaporator fan motor with a multimeter. If you have been using the Magic Chef freezer for a while, you’d know how it sounds while running. This could be due to something stuck in the blades or if the blades are not rotating smoothly. Your evaporator fan motor may still work, but it will start making a strange noise. If you have a vacuum cleaner at home, cleaning condenser coils will be a straightforward affair.Ĭhirp sound is a common symptom associated with a failing evaporator fan motor. It is held in place with screws, so get a screwdriver and remove all the screws. If your model has this guard, remove it in order to access condenser coils. Most models use a toe guard to protect these coils. condenser coils are usually found on the back of the freezer or across the bottom. Unplug the power cord to ensure your safety. This is why you should always clean the condenser coils when maintaining your freezer.īegin by disconnecting the power of your Magic Chef freezer. Not only that, but it will also reduce the energy efficiency of your Magic Chef freezer, costing you a great deal of money in the long run. When they get dirty, they won’t be able to dissipate heat, and hence, your Magic Chef freezer won’t freeze anymore. The condenser coils can get dirty over time as dust particles from surroundings accumulate over time. The refrigerant is a fluid or gaseous substance that absorbs heat and cools down the inside of your fridge. These coils are responsible for cooling and condensing the refrigerant, thus serving an important purpose. Magic Chef freezer not freezing? Here are a few solutions that you should try.ĭirty condenser coils are the leading reason for this problem in Magic Chef freezers. Let’s get started without any further delay! Magic Chef Freezer Not Freezing This roundup offers a look at some of the reasons why your Magic Chef freezer may stop freezing, and we have also got some potential fixes to put a smile back on your face. Since you rely on the freezer to store your food, this problem can be a huge frustration. Some users have complained that Magic Chef freezers stop freezing the food sometimes. If neglected, they can show several issues. Although they are quite durable, they also require maintenance for smooth performance. Magic Chef freezers are an automatic choice for many homeowners across the world, thanks to their powerful performance and ultimate features. I have been tinkering with the cc_config.xml file and the app_config.xml files. I am getting the app_info.xml file and the app_config.xml file confused. But for fine tuning the scheduling process, it's best to use the app_config.xml file. Many of the things you can do in the app_config.xml file, you can do in the app_info.xml file. You can use an app_info.xml file at all times, with or without an additional app_config.xml file. ![]() This way you can use apps that are optimized specifically for your CPU/GPU, or that you compiled yourself. The application information file (app_info.xml) is used by anonymous platform applications, and is used so the user can dictate to BOINC what application it should run instead of the default science application provided by the project. This file can be used with the default project provided science applications, and the third party science applications used through the anonymous platform module. With this file you can configure how many tasks BOINC should schedule to run on an appointed application and GPU. is the application configuration file, its name shortened to app_config.xml So could you please elaborate? As far as I know, I didn't refer to gpu_type anywhere.Īs I have written elsewhere in answer to you as well, since you continue to say app_info.xml where you mean app_config.xml: Perhaps that the question setting makes sense for you, but it doesn't for me. Although both, since they work on a per-project basis, run from the project directory.įor "gpu type" I think you are referring to cc_config.xml and in app_config.xml is the "coproc"? Please do not confuse the one with the other. It is used by anonymous platform applications - which are non-default by project delivered, non-downloaded automatically by BOINC applications - and is described in. It may be gone by day-break tomorrow.Īpp_info.xml is a whole different kettle of fish. So even when I today put in the information into that Wiki, I cannot guarantee that it will stay there. One has to keep in mind that the main developer (and boss, owner etc.) of BOINC (not Bionic, certainly not Bionnic unless you know what that acronym stands for?) goes through the User Wiki and weeds out what he finds superfluous and useless information on a regular basis. How does gpu_usage interact with cpu_usage? Why does it cause (usually) 2 tasks on each of two gpus? To do this, create a file app_config.xml in the project's directory, e.g. It is available with 7.0.40+ client versions. This mechanism allows you to specify scheduling parameters for specific applications or app versions. The Application configuration section starts with: And it doesn't answer the question of:Īpp_info.xml (you mean app_config.xml - Jord) -> in the Seti at home project directory I don't know the specifics of it but I know if you don't use it and have different GPUs of non-similiar speed or class, Bonic will only use the higher rated class. What this is telling the program is to use all available graphic cards. It would be easy to say that these portions of the cores are reserved but in truth they are "floating" meaning that they rotate between all the cores. If the number was 0.33 then it's 3 work units per Core. ![]() Again 0.5 is 1/2 so use each core supports 2 work units. Now the CPU usage tells the program how much of each core to use. If the number was 0.33 then it would use 1/3 of the GPU for each work unit, so 0.33 means 3 work units per GPU. So 1/2 of a GPU then means 2 work units per GPU. GPU 0.5 tells the program to use 1/2 of a gpu for each work unit. When in doubt, post the first 30 or so lines of your BOINC messages (CTRL+SHIFT+E).The above tells program what ratio of GPU to CPU. If a line is present, change its value from 0 to 1 and save the file.īut to be able to use the switch, BOINC should first detect both GPUs, which it isn't yet doing. Make sure first there isn't already such a file there, and that it doesn't already contain a line for, because if you add your own line at the top of the file, and there's another at the bottom with an opposite switch, the last line is used. So it should go into the BOINC Data directory, C:\ProgramData\BOINC ![]() I found it: C:\ProgramData\BOINC\projects\'s not where the cc_config.xml file should go.Ĭc_config.xml is a BOINC configuration file, not a Seti file. You ought to be able to install the same drivers for both GPUs, if both are AMD and GCN GPUs. Even when the system doesn't ask for it, reboot at the end of the installation. Then boot to normal mode and install the new drivers. Use something like Display Driver Uninstaller for that, from Windows Safe Mode. When changing GPUs always uninstall & clean out the old drivers. |
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