Demand is elastic
The conclusion of the price of elasticity of demand is the effect of price change based on the revenue it receives. It is based off the demand of the product and the price of the product.
for elasticity less than one the demand will be inelastic, i.e there will be very less effect of price on the demand.It will be relative inelastic or inelastic.
cross effect is positive in substitution effect and negative in complementry goods
The elasticity of demand refers to how sensitive the demand for a good is to changes in other economic variables. The different types are: price elasticity, income elasticity, cross elasticity and advertisement elasticity.
The speed of any mechanical wave depends on the medium through which it is traveling and the properties of that medium such as density and elasticity. In general, waves travel faster through medium with higher elasticity and lower density.
by causeing larger sound waves through objects
The speed of sound in a medium is derived from the properties of the medium, such as its density and elasticity. It is calculated using the formula: speed of sound square root of (elasticity / density).
density
Temperature can affect elasticity by changing the molecular structure of materials. In general, increasing temperature tends to decrease elasticity as the increased thermal energy disrupts the bonds between molecules, making the material more flexible. However, extreme cold temperatures can also decrease elasticity by making materials more rigid and prone to breakage.
The speed of any mechanical wave depends on the density of the medium. Since solids are the densest, the speed of sound is minimum in solids. It is the maximum in gases, since the medium is the least densest.
Physical Data : [top] Density (lb / cu. in.) 0.098 Specific Gravity 2.7 Melting Point (Deg F) 1090 Modulus of Elasticity Tension 10 Modulus of Elasticity Torsion 3.8
The speed of sound through an object is related to the density and elasticity of the material. Velocity = square root of (elasticity (bulk modulus) divided by density). Thus if you can measure the material's elasticity and the velocity of sound waves passed through it, the density can be calculated without reference to the mass of the object.
The two main factors that affect the speed of sound in a material are the density of the material and the elasticity of the material. In general, sound travels faster in materials that are more dense and have higher elasticity.
It has no effect. Only mass and volume have an effect on density.
The speed of seismic waves is influenced by the density and elasticity of the material they travel through. Generally, denser materials can transmit seismic waves faster if they also possess high elasticity. This is because the stiffness of the material, which is a measure of its ability to resist deformation, combined with its density, determines how quickly the energy can propagate through it. Thus, while density alone affects wave speed, it must be considered alongside other properties like elasticity to fully understand its impact.
Temparature effect on density