The force that titanium polymer can withstand varies based on its specific formulation and application. Typically, titanium-based polymers can exhibit high strength and durability, often capable of withstanding forces in the range of 50 to 200 MPa or more. However, for precise values, it's essential to refer to the manufacturer's specifications or conduct material testing specific to the intended use.
Titanium can withstand significant pressure due to its high strength-to-weight ratio and excellent corrosion resistance. The exact pressure tolerance depends on the specific titanium alloy and its treatment, but commercially pure titanium can endure pressures up to 900 MPa (about 130,000 psi) or more in various applications. In aerospace and industrial settings, titanium components are designed to handle extreme conditions, including high pressure and temperature.
The sternum can withstand varying amounts of force depending on factors like age and health. Generally, it takes about 450 pounds of force to fracture the sternum in a healthy adult. However, this number can be lower in older individuals or those with weakened bones.
from 1200 to 2000g
There is no copper in titanium by default as they are two different elements. If there is any copper present in the titanium, it would be a trace amount and would need to be specifically measured to determine the quantity. The two elements can be separated using appropriate methods for analysis.
As of July 2013, 10 K of titanium is worth around $10,000. It is stated that in the United States titanium is worth between ten to sixteen dollars per pound.
A femur bone can withstand roughly 4000 N of force.
It would depend on the rivet and the type of force applied.
An eggshell can withstand a lot more pressure than people think. It can withstand the force of 6.2 pounds or 25 Newtons.
As much as is available. That of course does not mean the paper can withstand it.
Titanium can withstand significant pressure due to its high strength-to-weight ratio and excellent corrosion resistance. The exact pressure tolerance depends on the specific titanium alloy and its treatment, but commercially pure titanium can endure pressures up to 900 MPa (about 130,000 psi) or more in various applications. In aerospace and industrial settings, titanium components are designed to handle extreme conditions, including high pressure and temperature.
I have 10 grams of titanium how much is worth
The femur, the strongest bone in the human body, can withstand compressive forces of around 1,700 to 2,500 pounds-force per square inch (psi) before breaking.
Human organs vary in their ability to withstand force. For example, the skin can withstand around 20 pounds of force per square inch before tearing. However, relatively delicate organs like the liver or spleen can rupture with much less force, around 4-5 pounds of force. It's important to protect and take care of our organs to prevent injury.
The neck can typically withstand forces ranging from 300 to 500 pounds before sustaining serious injury. It is important to note that the force threshold can vary depending on factors such as the person's age, physical condition, and the direction of the force applied. It is crucial to avoid putting excessive force on the neck to prevent injuries.
An eggshell can usually withstand a force of about 5-6 pounds before breaking. The force required to break an eggshell can vary based on factors like the direction of the force and the condition of the shell.
The sternum can withstand varying amounts of force depending on factors like age and health. Generally, it takes about 450 pounds of force to fracture the sternum in a healthy adult. However, this number can be lower in older individuals or those with weakened bones.
Ordinary glass can typically withstand compressive forces up to 10,000 pounds per square inch, but it is more vulnerable to tensile and impact forces. These types of stresses can cause glass to shatter or break more easily. The exact amount of force glass can withstand depends on factors such as its thickness, quality, and shape.