Nope. Not unless you, yourself, sends it.
This requires the use of an aggregator to interface with the cell carrier's networks. See the link below for a suggested Google search to get you started on finding one.
u can find it in africa
The total power required to charge all the cellphones in New Zealand depends on the number of active cellphones and their average battery capacity. Assuming there are approximately 5 million cellphones in NZ, and each has an average battery capacity of about 2,500 mAh (or 2.5 Ah) at 3.7 volts, the total energy needed for a full charge would be around 46.25 million watt-hours (or 46.25 MWh). This is a rough estimate, and actual consumption may vary based on usage patterns and charging efficiency.
Not the ones you receive - but certainly they keep track of the number you send. They need to know if you exceed any free text allowance you have - so they can charge you for any sent messages over your limit. All sent texts are usually itemised on your bill !
Nope
any carrier or broker
Yes that the Quick Charge II Instant Cell Phone Charger needs 2 AA batteries.
No - service providers don't charge customers to receivecalls - only to make them.
The Quick Charge II Instant Cell Phone Charger will work with most but not all Verizon phones.
The Hall coefficient has the same sign as the charge carrier. The charge carrier in a normal electric current, the electron, is negative, and as a result the Hall coefficient is negative.
Your only option is to contact your carrier, and finding out if these records are even available or retrievable.... but I'd be surprised if they were. IF the records still exist, it may well require a charge to do the research and furnish you with the copies.
The fundamental carrier of electric charge is the electron. The charge on one electron is 1.6021765 × 10−19 Coulomb, and is negative. Charge can't exist in any smaller quantity, and all charges are multiples of this quantity. Protons have a positive charge of the same quantity, but they stay in their respective nuclei and don't participate in the movement of charge from place to place.