pharmaceutical executives |
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News for 12-Feb-25 Source: MedicineNet Senior Health General Source: MedicineNet Senior Health General Source: MedicineNet Prevention and Wellness General Source: MedicineNet Senior Health General
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Until recently, people used a technique called symmetric key cryptography to secure information being transmitted across public networks in order to make pharmaceutical executives shopping more secure. This method involves encrypting and decrypting a pharmaceutical executives message using the same key, which must be known to both parties in order to keep it private. The key is passed from one party to the other in a separate transmission, making it vulnerable to being stolen as it is passed along. With public-key cryptography, separate keys are used to encrypt and decrypt a message, so that nothing but the encrypted message needs to be passed along. Each party in a pharmaceutical executives transaction has a *key pair* which consists of two keys with a particular relationship that allows one to encrypt a message that the other can decrypt. One of these keys is made publicly available and the other is a private key. A pharmaceutical executives order encrypted with a person's public key can't be decrypted with that same key, but can be decrypted with the private key that corresponds to it. If you sign a transaction with your bank using your private key, the bank can read it with your corresponding public key and know that only you could have sent it. This is the equivalent of a digital signature. While this takes the risk out of pharmaceutical executives transactions if can be quite fiddly. Our recommended provider listed below makes it all much simpler. Fillings Get Smaller…and Smaller by: Judith Sloan
—We all remember going to the dentist, opening wide, and listening with held breath while he examined our teeth for decay. "Please, no cavities," we prayed. With his prickly instrument in hand, our dentist probed every tooth, looking for "soft" spots where decay had invaded our once hard, pristine dental enamel. And when the point found its quarry, a tiny spot of decay, he would nod and say, "We've got a small one here. We'll watch to see if it grows into something." No longer. Fast-forward to 2004, and the prickly instrument takes a back seat to a high-tech laser probe (http://www.washdent.com/services.html) that lands a preemptive strike in the battle against decay. Make way for "Minimally Invasive Dentistry." (http://www.washdent.com/services.html) The mouthful of words means simply that dentists no longer allow dots of decay to advance into large craters. Armed with the ultimate in high-tech sleuthing, they now set out to find decay—at the earliest possible moment. "Now we can absolutely eliminate many large fillings that lead to cracked teeth, crowns and other more invasive treatment," says Dr. Daniel J. Deutsch (http://www.washdent.com/deutsch.html), of the Washington Center for Dentistry in Washington, DC. (http://www.washdent.com) Here's how it works: The dental decay finder touches the surface of every tooth, each time flashing a digital score that reports the presence of decay. A tooth that scores above a certain number—has at least the tiniest dot of decay. And getting at the teeny offending area involves another technological wonder. A gentle dental "sandblaster" uses tiny particles to whisk away decay in layers. The area gets filled in with a tooth-colored liquid that hardens in seconds under a special light. Patients walk out of the office with tiny fillings. "And the best part," says Dr. Deutsch, "is they have treatment with no needle and no drill!"
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