http://wiki.answers.com/Q/How_many_solar_panels_and_batteries_do_you_need_to_run_a_5000_watt_inverter"
Well it depends on the power efficient of each solar panel and how much light they get. If you got panels that, in normal sunlight put out 100 watts; then for 1,500,000 watts you would need: 15 thousand panels. Now lets say you use two mirrors on each panel; then you would have about three times the light/power in normal light, so 1,500,000 divided by 300: so you would need 5000 panels and 10,000 mirrors.
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An inverter changes a d.c. input to an a.c. output. Inverter is a device to change low volt DC to high volt AC 12 Dc to 220 Ac volt So many type of inverter of watts 500 watt 1000 watt 5000 watt
A 5000-watt inverter on a 24 volt system draws approximately 208 amps (5000 watts / 24 volts = 208.33 amps). This calculation assumes 100% efficiency, so actual power draw may be slightly higher.
40-45 if you all you have is a 2500 W inverter and depending on how efficient those solar modules are. But I wouldn't guarantee that small of a solar system running those 12 PC's. First, how long are you powering these 12 PC's each day and how much electricity do they use? If it's only 6 hours/day, then you're fine. But if you'll leave them on for 12 hours/day, you'll need a bigger system. If they only use 100 Watts each, then 12 hours is okay. But if they use 200 Watts of electricity each, then you'll need a bigger system. If it's 12 hours/day and 200 Watts/ P then you'll be using 28.8 kWh/day (12 PC's * 12 hours/day * 200 W/PC). Secondly, where are these PC's/ solar panels going to be located? I need to know how much the Sun will shine on them (sun hours, or solar hours per day). I'm guessing they'll be in Haiti in which case the Sun gives about 6 hours of sunlight/day. Now, I'm going to divide 28.8 kWh/day by 6 hours/day and say you need a 4.8 kW system, not the 2.5-3 kW system that 2500 W inverter is good for. See a 4.8 kW solar system is going to produce about 80% AC power or 3.8 kW AC. That 2500 W inverter will blow with that much electricity. So, I'm either going to buy two (2) 2500 W inverters, or one (1) 5000 W inverter. And I wouldn't buy 40-45, 65 W modules either - I'm thinking 200 W modules would better suit. For your one 2500 W inverter, you'd only need 12-14, 200 W modules. For a 4.8 kW system, I'd buy 24-28, 200 W modules. 40-45, 65 W modules if you've chosen a 2500 W inverter and expect it to run your 12 PC's. Be very carfeul with these calculations though! Wisconsin receives two hours of sunlight a day, so the number triples. Loss for the inverter and the batteries should also be considered, as well as temp issues. Solar panels do not work as well when warm. You also need to consider the issue of cloudy days. Will these need to run under all circumstances? Wind may also be added. To ensure operation of these systems 25 hours a day in Haiti I came up with 120 panels and 250 for Wisconsin.
To run a 5000 BTU air conditioner continuously, you would need a solar panel system with an average output of about 220 watts. However, the actual size may vary based on factors such as location, weather conditions, and efficiency of the solar panels. Consulting with a solar energy expert would help determine the specific panel size required for your setup.
it was made about 5000 million years ago
To run a 5,000 BTU air conditioner, you'll typically need an inverter rated between 800 to 1,200 watts. This accounts for the starting surge power, which can be higher than the running power. It's essential to check the specific air conditioner's starting and running wattage requirements for accurate inverter sizing. Additionally, ensure that the inverter can handle the peak load to avoid damage.
A inverter is what makes you be able to go from dc to AC. Usually a 400 watt inverter goes in a vehicle while a 5000 is typical for homes. If you wanted to use a laptop on electric only in your car... you would plug the inverter into the cig. lighter outlet in the car and your laptop into the inverter. Hope that helps!
Unfortunately, you have not specified a model. The only 5000 BTU model I see on Danby's page is the DAC050MUB1GDB.This device is a 115V machine that draws up to 4.8A of current, which totals at 552VA.Even with really poor efficiency, your 2000W inverter should theoretically run this unit. HOWEVER - most motor-driven devices do not work well on poor inverters and may not start up at all! Also, the inverter and/or the device may heat up excessively.It would be best if you could test the device for an hour before making the purchase.You have not provided the model of your inverter, so I cannot help out any further.
It costs about $2000 to $5000 install a basic solar energy system for your home in Arizona. You can find more information at www.srpnet.com/environment/earthwise/solar/
That depends entirely on who you get to do it, with what material, and to what quality level. Could be $500-$5000.