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jonny [76]
3 years ago
8

How did most Cherokee react to the increasing presence of America's on their ancestral lands in the early 1800s?

Social Studies
1 answer:
Tamiku [17]3 years ago
5 0

Answer:

C

Explanation:

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Does New Zealand have six states and two territories
omeli [17]

Answer:

no

Explanation:

saw on another brain.ly

4 0
3 years ago
What country was the first for Gandhi’s social protests? Please state the exact place.
Ganezh [65]

gandhis first social protest was in south africa

6 0
3 years ago
In 2002, researchers at SUNY Stony Brook succeeded in synthesizing the 7741 base polio virus genome from its published sequence,
vodomira [7]

The Dual Use Dilemma refers to uncertainty on how to prevent misuse of scientific breakthroughs.

<h3><u>Explanation: </u></h3>

The Dual Use Dilemma is a general dilemma in the scientific community that arises whenever a scientific breakthrough happens that can be weaponized by hostile entities in order to be used as a force of evil.

The dual use refers to the technology obtained from the breakthrough being used to fulfill its intended purpose of helping the general population, while it may be used as a weapon as well, thus the dual use dilemma. Scientists think that preventive measures would only lead to impeding the scientific progress of the concept, which leads to an even bigger problem.

4 0
4 years ago
Which is a quality that both poetry and prose may have?
kicyunya [14]

Answer:

Tone

Explanation:

Hoped that helped:P

7 0
2 years ago
Suppose that scientists discover an asteroid that is 2.0 AU from the sun. If 1 AU - 150 million km, how long would the asteroid'
Mice21 [21]

Answer:

2.84*10^-3 years = 0.00284*10^-3 years

Explanation:

To find the orbital period you use the following formula:

T=\sqrt{\frac{4\pi^2r^3}{GM}}

r: 2.0A = 2.0(1.5*10^11m)=3*10^11 m

G: Cavendish constant = 6.67*10^-11 Nm^2/kg^2

M: mass of the sun = 1.98*10^30 kg

T=\sqrt{\frac{4\pi^2(3*10^{11}m)^3}{(6.67*10^{-11}Nm^2/kg^2)(1.98*10^{30}kg)}}\\\\T=89839.27\ s

Next, you calculate the time in seconds of one Earth's year:

1\ year=365days*\frac{24\ h}{1\ day}*\frac{3600\ s}{1\ h}=31536000\ s

thus, you use this value to find the orbital period of the asteroid in Earth's year:

T=89839.27\ s*\frac{1\ year}{31536000\ s}=2.84*10^{-3}\ years

5 0
3 years ago
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