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strawberrymochi390
14.01.2020 •
Biology
What is the role of dna ligase in the elongation of the lagging strand during dna replication? a) it synthesizes rna nucleotides to make a primer.b) it catalyzes the lengthening of telomeres.c) it joins okazaki fragments together.d) it unwinds the parental double helix.e) it stabilizes the unwound parental dna
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Ответ:
C) It joins Okazaki fragments together
Explanation:
DNA ligase is an enzyme used by the cell during the DNA replication process which joins the discontinuous strands or Okazaki fragments formed during the process.
The DNA ligase enables the formation of the bond between two nucleotides by binding the 3 'C sugar of one end to 5' C phosphate of another end, a bond called phosphodiester bond.
In the given question, since the function of DNA ligase is asked which is to join the Okazaki fragments therefore is the correct option.
Thus, Option-C is the correct answer.
Ответ:
Go Direct Force and Acceleration couples a 3-axis accelerometer with a stable and accurate force sensor that measures forces as small as ±0.1 N and up to ±50 N.
Note: Vernier products are designed for educational use. Our products are not designed nor are they recommended for any industrial, medical, or commercial process such as life support, patient diagnosis, control of a manufacturing process, or industrial testing of any kind.
What's Included
Go Direct Force and Acceleration
Hook attachment
Bumper attachment
Nylon screw
Accessory Rod
Micro USB Cable
Compatible Software
Choose a platform below to see its compatibility requirements.
LabQuest
Computers
Chromebook
iOS
Android
Javascript
Scratch
Python
LabVIEW
Assembly
The hook and bumper attach to the sensor by screwing them into the post.
Hook attached
Bumper attached
Getting Started
Please see the following link for platform-specific connection information:
www.vernier.com/start/gdx-for
Bluetooth Connection
USB Connection
Install Graphical Analysis 4 on your computer, Chromebook™, or mobile device. See www.vernier.com/ga4 for software availability.
Charge your sensor for at least 2 hours before first use.
Turn on your sensor by pressing the power button once. The Bluetooth® LED will blink red.
Launch Graphical Analysis 4.
Click or tap Sensor Data Collection.
Click or tap your Go Direct sensor from the list of Discovered Wireless Devices. Your sensor's ID is located near the barcode on the sensor. The Bluetooth LED will blink green when it is successfully connected.
This is a multi-channel sensor. The active channel is listed in the Connected Devices Sensor Channels list. To change channels, select the check box next to the Sensor Channel(s) you would like to activate.
Click or tap Done to enter data‑collection mode.
If using a computer or Chromebook, install Graphical Analysis 4. If using LabQuest 2, make sure LabQuest App is up to date. See www.vernier.com/ga4 for Graphical Analysis 4 availability or www.vernier.com/downloads to update LabQuest App.
Connect the sensor to the USB port.
Launch Graphical Analysis 4 or turn on LabQuest 2. You are now ready to collect data.
This is a multi-channel sensor. To change the default channel selections, see www.vernier.com/start/gdx-for
Charging the Sensor
Connect Go Direct Force and Acceleration to the included Micro USB Cable and any USB device for two hours.
You can also charge up to eight Go Direct Force and Acceleration Sensors using our Go Direct Charge Station, sold separately (order code: GDX-CRG). An LED on each Go Direct Force and Acceleration indicates charging status.
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