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Terho said: "Using the best recycling technology, nothing is wasted. Between 65 percent and 80 percent of a Nokia can be recycled. Plastics that can't be recycled are burnt to provide energy for the recycling process, and other materials are ground up into chips and used as construction materials or for building roads. This way, nothing has to go to landfill."
Hi guys, I have Macbook Pro 14 M1, 8core CPU, 14 core GPU, 16GB memory...MacOS Ventura 13.01...seems like verything is working fine for my size of projects...the power of the machine is enough...the only question I have is that it seems to me like the "link" Check for new version is not working...now i have version 1.1.19 +1458 is it the last one...the newest?
Well I have downloaded the Sketchup2021, installed the Enscape...could not to go to sleep...and then it crashes...tried everything...now Im not able to even start the sketch with plugins...Im on the road out of office...so my specs are pretty basic MacBook Air M1 8GB RAM...is there someone who has "working version" of Enscape with M1 chip?
If that still doesn't help, then repeat the steps shown to remove the network. You can then - before you add the WLAN network again - perform an SMC reset. There are two different instructions for this, one for Mac models without and one for models with a T2 chip. From which Macs the T2 chip is installed, you can read in the second of the guides listed here:
There are mainly two types of filter capacitors in battery charging circuits: input filter capacitor and output filter capacitor. The AC voltage across the step-down transformer is rectified and often filtered using capacitors to obtain a regulated DC voltage through a voltage regulator chip to charge the battery.
In most cases, the voltage regulator chip requires input capacitor at its input and also output capacitor at its output terminals. These input and output capacitors are located close to the chip. The input capacitor ensures that the voltage regulator chip connected across the transformer is stable and does not oscillate.
In a simple battery charging circuit, the battery is directly connected across the output capacitor of the voltage regulator chip. In most cases additional filter capacitors are not required in such circuits.
This paper proposes a multiparameter water quality sensing system that can simultaneously measure the following four parameters: pH, DO concentration, ammonia nitrogen concentration, and temperature of the water sample. The electrode array is made of microelectromechanical system (MEMS) technology and includes three three-electrode arrays and a resistive temperature sensor. PANI/CuO is used as the pH-sensitive material and the ammonia nitrogen-sensitive material. High-purity Pt resistance sensors are used for the temperature sensor. Considering the influence of temperature on various parameters, an integrated serpentine Pt resistance heater is used to compensate for temperature. Experimental results demonstrate that the chip exhibits good sensing performance. The chip is small and structurally stable; therefore, it is suitable for mass production as well as for use in remote and distributed measurements.
The sensor chip contains three three-electrode arrays (ammonia nitrogen sensor, pH sensor, and DO sensor) and a Pt resistance temperature sensor (Figure 1(a)). The three electrodes of the electrode array include a working electrode, a counter electrode (Au), and a reference electrode (Ag/AgCl) [29, 30]. The working electrodes of the three sensors are modified with different sensitive membranes. The working electrode of the DO sensor was unmodified and based on Au. The working electrode of the ammonia nitrogen sensor was modified using PANI/Cu , and the working electrode of the pH sensor was modified using PANI/CuO [32, 33]. Considering the influence of temperature on the measurement of various parameters, a flat sandwich sensor structure with a serpentine heater was prepared (Figure 1(b)) [34, 35].
In this paper, the corresponding electrodes were modified by using an adhesive coating method. This method may cause the thickness of the modified sensitive film to be slightly different, which will slightly affect the measurement results. Therefore, the next research direction will use other methods to modify the electrode to ensure that the thickness of the modified sensitive film is consistent. In summary, the multiparameter sensor chip studied in this paper was suitable for drinking water detection. The sensor chip was small and rugged and suitable for portable or online water quality detection systems. 2b1af7f3a8