From the information given, cannon ball weighs 40 kg and has a potential energy of 14000 J.
We need to find its height.
We will use the formula P.E = mgh
Therefore h = P.E / mg
where P.E is the potential energy,
m is mass in kg,
g is acceleration due to gravity (9.8 m/s²)
h is the height of the object's displacement in meters.
h = P.E. / mg
h = 14000 / 40 × 9.8
h = 14000 / 392
h = 35.7
Therefore the canon ball was 35.7 meters high.
The height of the cannon ball to have 14000 J of potential energy is approximately 357.14 meters. This is calculated using the formula for potential energy: PE = mgh, and solving for 'h'.
The potential energy (PE) of an object is given by the formula PE = mgh, where 'm' is the mass of the object, 'g' is the acceleration due to gravity (standard approximate value is 9.8 m/s² on Earth), and 'h' is the height. In your question, we want to find the height 'h'. Given that the potential energy is 14000 J and the mass of the cannon ball is 40 kg, we can rearrange the formula to solve for 'h': h = PE / (m*g).
So, inputting the given values, h = 14000 J / (40 kg * 9.8 m/s²). Solving this, we find that the height is approximately 357.14 meters. This means the cannon ball was at around this height to have 14000 J of potential energy.
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- Decreasing one of the masses to 1/2 of its original value
- Increasing the distance by a factor of
Explanation:
There are no options provided, however we can still answer the question.
In fact, the magnitude of the gravitational force between two objects is given by the equation:
where
is the gravitational constant
m1, m2 are the masses of the two objects
r is the separation between them
We notice that:
Therefore, in order to reduce the gravitational attraction by one half, we can do one of the following changes:
- Decreasing one of the masses to 1/2 of its original value: for example, if , the gravitational force becomes
- Increasing the distance by a factor of : in fact, if , the gravitational force becomes
Learn more about gravitational force:
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Q: What happens when cold air approaches a body of warm air? Optional Answers: A. The Warm air rises. B. The warm and cold air both disappear. C. The warm and cold air mix immediately. D. The cold air rises.
A few sentences will do *3-4 sentences is perfect*
Answer:
This is because of the different latitudes and the movement of the stars.
Explanation:
Some constellations can be seen throughout the year and others only at certain times. In addition to the appearance of the night sky changing throughout the year, it also depends on latitude, that is, the appearance of the sky at the same time is different at different latitudes. For example, you can see the Polar star in the northern hemisphere but you cannot see it in the southern hemisphere. Cruzeiro do Sul, seen in the southern hemisphere, is only seen in the northern hemisphere, close to the horizon, in the tropical region.
Another important difference between the two hemispheres is in the movement we observe for the stars over the course of a night as they revolve around the north celestial pole (in the northern hemisphere) clockwise and around the south celestial pole (in the southern hemisphere) in anticlockwise.
Answer:
I only really know the "How do we use these EM waves in our lives?" part srry
Explanation:
EM waves are used to make sure you cellphone, radio, TV, and etc. have service/ connection.
B. breaking a mirror
C. cutting wood
D. popping popcorn
Thanks :)
Popping popcorn action will result in a product with new chemical properties, therefore the correct answer for the given problem is option D.
In a chemical reaction, one or more components referred to as reactants—are changed into one or more other substances—also referred to as byproducts.
A chemical reaction rearranges the constituent atoms of the reactants to create different substances as products.
The energy of the reactant is greater than the energy of the product because the extra energy is released during an exothermic reaction.
Popcorn would be the best choice since it would transform the pre-popped kernels into something else whereas the other options would merely change their outward look.
Thus, popping popcorn action will result in a product with new chemical properties, therefore the correct answer for the given problem is option D
Learn more about chemical reactions here,refer to the link ;
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