Answer + Explanation:
To determine the hardness value of each rock, you need to follow the instructions provided and test the rocks with different substances. Here is a step-by-step guide:
1. Start by scratching the rock with your fingernail. If your fingernail can make a mark on the rock, record the related hardness value from the chart in your table. For example, if your fingernail scratches the rock and the corresponding hardness value in the chart is 2, you would record 2 in your table.
2. If your fingernail doesn't scratch the rock, move on to the next substance, which is a copper penny. Try scratching the rock with the copper penny. If the penny doesn't scratch the rock, move on to the next substance.
3. The next substance to try is a wire nail. Scratch the rock with the wire nail. If the wire nail doesn't scratch the rock, proceed to the last substance.
4. The last substance to try is a masonry nail. Scratch the rock with the masonry nail. If the masonry nail doesn't scratch the rock, record the highest value from the chart in your table.
By following these steps and recording the highest hardness value achieved through the scratching test with each substance, you will be able to determine the hardness value of each rock.
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If the input force is less than the output force, then the input distance must be greater than the output distance.
If the input force is greater than the output force, then the input distance must be greater than the output distance.
If the input force is less than the output force, then the input distance must be the same as the output distance.
If the input force is equal to the output force, then the input distance must be greater than the output distance.
Answer:
If the input force is less than the output force, then the input distance must be greater than the output distance.
Explanation:
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The wavelength of the sound increases.
The frequency of the sound increases.
The wave speed of the sound increases.
Answer:
The sound is silenced.
Explanation:
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Disequilibrium occurs when the quantity of supply does not equal the quantity of demand.
The market is experiencing a disequilibrium when the market price is above or below the equilibrium price. Whenever markets experience imbalances—it creates disequilibrium prices, surpluses, and shortages—market forces drive prices toward equilibrium.
A surplus exists when the price is above equilibrium, which encourages sellers to lower their prices to eliminate the surplus.
A shortage will exist at any price below equilibrium, which leads to the price of the good increasing.
For example, imagine the price of dragon repellent is currently $6 per can. People only want to buy 400 cans of dragon repellent, but the sellers are willing to sell 600 cans at that price. This creates a surplus because there are unsold units. Sellers will lower their prices to attract buyers for their unsold cans of dragon repellant.
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Answer:
black is it
Explanation:
B. Yuri Gagarin
C. John Glenn
D. Valentina Tereshkova
Answer:
Yuri Gagarin
Explanation:
He was the first man in orbit
The kinetic energy of a body with a mass of 30 kg and a speed of 10 m/s is 1500 kg m²/s².
In physics, the kinetic energy of аn object is the form of energy thаt it possesses due to its motion. In the case above, we are given the formula for kinetic energy:
KE = 0.5 * m * v²
where m is mass and v is speed. And we are given m = 30 kg and v = 10 m/s.
To calculate the kinetic energy, we simply plug in the values of m and v into the formula:
KE = 0.5 * 30 kg * (10 m/s)²
Simplifying the equation gives:
KE = 0.5 * 30 kg * 100 m²/s²
KE = 15 kg * 100 m²/s²
KE = 1500 kg m²/s²
Therefore, the kinetic energy of the body is 1500 kg m²/s².
For more information about kinetic energy refers to the link: brainly.com/question/26472013
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Answer:
The kinetic energy of a body mass of 30 kg traveling in space at a speed of 10 m/s can be calculated with the formula KE = 0.5 * m * v^2, where m is the mass of the body and v is the speed. In this case, the kinetic energy would be equal to 0.5 * 30 * 10^2 = 1500 Joules.