Skip to main content
A solidus (/) shall not be followed by a multiplication sign or a division sign on the same line unless parentheses are inserted to avoid any ambiguity.
Source Link
user59991
user59991

It is a coincidence.

The reason is that the hubbleHubble constant (H)H is not constant, and varies over time. For example 6 billion years ago, when the universe was 7.5 billion years old, the Hubble constant was about 100 km (km/s)/Mpc, what means the Hubble Timetime was 9.78 billion years. When the universe is 24 billion years of age, HH will be 60 km (km/s)/Mpc, and the Hubble Timetime will be 16.3 billion years.

Not even close to the age of the universe.

It is a coincidence.

The reason is that the hubble constant (H) is not constant, and varies over time. For example 6 billion years ago, when the universe was 7.5 billion years old, the Hubble constant was about 100 km/s/Mpc, what means the Hubble Time was 9.78 billion years. When the universe is 24 billion years of age, H will be 60 km/s/Mpc, and the Hubble Time will be 16.3 billion years.

Not even close to the age of the universe.

It is a coincidence.

The reason is that the Hubble constant H is not constant, and varies over time. For example 6 billion years ago, when the universe was 7.5 billion years old, the Hubble constant was about 100 (km/s)/Mpc, what means the Hubble time was 9.78 billion years. When the universe is 24 billion years of age, H will be 60 (km/s)/Mpc, and the Hubble time will be 16.3 billion years.

Not even close to the age of the universe.

Correct typos
Source Link
John Rennie
  • 362.7k
  • 132
  • 780
  • 1.1k

It is a coincedencecoincidence. The

The reason is that the hubble constant (H) is nonot constant, and varies over time. For example 6 billion years ago, when the universe was 7.5 billion years old, the Hubble constant was about 100 km/s/Mpc, what means the Hubble Time was 9.78 billion lightyearsyears. When the universe is 24 billion years of age, H will be 60 km/s/Mpc, and the Hubble Time will be 16.3 billion lightyearsyears. Not

Not even close to the age of the universe.

It is a coincedence. The reason is that the hubble constant (H) is no constant, and varies over time. For example 6 billion years ago, when the universe was 7.5 billion years old, the Hubble constant was about 100 km/s/Mpc, what means the Hubble Time was 9.78 billion lightyears. When the universe is 24 billion years of age, H will be 60 km/s/Mpc, and the Hubble Time will be 16.3 billion lightyears. Not even close to the age of the universe.

It is a coincidence.

The reason is that the hubble constant (H) is not constant, and varies over time. For example 6 billion years ago, when the universe was 7.5 billion years old, the Hubble constant was about 100 km/s/Mpc, what means the Hubble Time was 9.78 billion years. When the universe is 24 billion years of age, H will be 60 km/s/Mpc, and the Hubble Time will be 16.3 billion years.

Not even close to the age of the universe.

Source Link

It is a coincedence. The reason is that the hubble constant (H) is no constant, and varies over time. For example 6 billion years ago, when the universe was 7.5 billion years old, the Hubble constant was about 100 km/s/Mpc, what means the Hubble Time was 9.78 billion lightyears. When the universe is 24 billion years of age, H will be 60 km/s/Mpc, and the Hubble Time will be 16.3 billion lightyears. Not even close to the age of the universe.