Specific Gravity of Explosive using Burden Suggested in Konya Formula Formula

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Specific Gravity of Explosive is the ratio of density of explosive to density of reference substance. Check FAQs
SGe=SGr(B3.15De)3
SGe - Specific Gravity of Explosive?SGr - Specific Gravity of Rock?B - Burden?De - Diameter of Explosive?

Specific Gravity of Explosive using Burden Suggested in Konya Formula Example

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Here is how the Specific Gravity of Explosive using Burden Suggested in Konya Formula equation looks like with Values.

Here is how the Specific Gravity of Explosive using Burden Suggested in Konya Formula equation looks like with Units.

Here is how the Specific Gravity of Explosive using Burden Suggested in Konya Formula equation looks like.

2.0972Edit=2.3Edit(14Edit3.1555Edit)3
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Specific Gravity of Explosive using Burden Suggested in Konya Formula Solution

Follow our step by step solution on how to calculate Specific Gravity of Explosive using Burden Suggested in Konya Formula?

FIRST Step Consider the formula
SGe=SGr(B3.15De)3
Next Step Substitute values of Variables
SGe=2.3(14ft3.1555in)3
Next Step Convert Units
SGe=2.3(4.2672m3.151.397m)3
Next Step Prepare to Evaluate
SGe=2.3(4.26723.151.397)3
Next Step Evaluate
SGe=2.09718117817291
LAST Step Rounding Answer
SGe=2.0972

Specific Gravity of Explosive using Burden Suggested in Konya Formula Formula Elements

Variables
Specific Gravity of Explosive
Specific Gravity of Explosive is the ratio of density of explosive to density of reference substance.
Symbol: SGe
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Specific Gravity of Rock
Specific Gravity of Rock is the ratio of density of rock to density of reference substance.
Symbol: SGr
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Burden
Burden is the distance from the blast hole to the nearest perpendicular free face.
Symbol: B
Measurement: LengthUnit: ft
Note: Value should be greater than 0.
Diameter of Explosive
Diameter of Explosive is any straight-line segment that passes through the center of the explosive.
Symbol: De
Measurement: LengthUnit: in
Note: Value should be greater than 0.

Other formulas in Vibration Control in Blasting category

​Go Wavelength of Vibrations caused by Blasting
λv=(Vf)
​Go Velocity of Vibrations caused by Blasting
V=(λvf)
​Go Velocity of Particles disturbed by Vibrations
v=(2πfA)
​Go Velocity of Particle One at Distance from Explosion
v1=v2(D2D1)1.5

How to Evaluate Specific Gravity of Explosive using Burden Suggested in Konya Formula?

Specific Gravity of Explosive using Burden Suggested in Konya Formula evaluator uses Specific Gravity of Explosive = Specific Gravity of Rock*(Burden/(3.15*Diameter of Explosive))^3 to evaluate the Specific Gravity of Explosive, The Specific Gravity of Explosive using Burden Suggested in Konya Formula is defined as specific gravity of explosive when burden and specific gravity of rock are known. Specific Gravity of Explosive is denoted by SGe symbol.

How to evaluate Specific Gravity of Explosive using Burden Suggested in Konya Formula using this online evaluator? To use this online evaluator for Specific Gravity of Explosive using Burden Suggested in Konya Formula, enter Specific Gravity of Rock (SGr), Burden (B) & Diameter of Explosive (De) and hit the calculate button.

FAQs on Specific Gravity of Explosive using Burden Suggested in Konya Formula

What is the formula to find Specific Gravity of Explosive using Burden Suggested in Konya Formula?
The formula of Specific Gravity of Explosive using Burden Suggested in Konya Formula is expressed as Specific Gravity of Explosive = Specific Gravity of Rock*(Burden/(3.15*Diameter of Explosive))^3. Here is an example- 2.097181 = 2.3*(4.26720000001707/(3.15*1.39700000000559))^3.
How to calculate Specific Gravity of Explosive using Burden Suggested in Konya Formula?
With Specific Gravity of Rock (SGr), Burden (B) & Diameter of Explosive (De) we can find Specific Gravity of Explosive using Burden Suggested in Konya Formula using the formula - Specific Gravity of Explosive = Specific Gravity of Rock*(Burden/(3.15*Diameter of Explosive))^3.
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